Showing posts with label HVAC. Show all posts
Showing posts with label HVAC. Show all posts

Monday, February 10, 2020

Never Stop Learning - Get your Training Manuals for Critical Facilities and Data Center Design



Reliability and Redundancy Matter - Your data center / critical facilities should be kept rolling under any circumstances. Understanding the infrastructure's design and operations can minimize disruptions and avoid costly downtime.

With our high quality training courses and credential programs, you are able to gain the knowledge and best practices in data center / critical infrastructure design, operations and efficiency:

Data Center and Critical Facilities Design Courses and Syllabus   Data Center and Critical Facilities Design Courses and Syllabus


Budget concern? Inconvenient to travel and take the face-to-face courses? Why don't consider to purchase the self-learning kit / training manuals which are currently on sale for further learning and reference?


  • Electrical Design for Mission Critical Supply
    http://www.amazon.com/dp/9887797219

    Total Number of Slide: 130
    Hard Copy: Black & White
    Digital Copy: DVD Included (in color and PDF format)

  • HVAC Design and Cooling for Data Center Efficiency
    http://www.amazon.com/dp/9887797200

    Total Number of Slide: 263
    Hard Copy: Black & White
    Digital Copy: DVD Included (in color and PDF format)

  • Project Management for Data Center & Critical Facilities: From Design to Commissioning
    http://www.amazon.com/dp/9887797235

    Total Number of Slide: 216
    Hard Copy: Black & White
    Digital Copy: DVD Included (in color and PDF format)


Each manual is edited by a team of Chartered Engineers (CEng) who has more than 20 years experience in data center design & build, building services engineering, facilities management and energy conservation in the private and public sectors. All content has been fully taken into account the requirements of international codes and standards, which prepare you to face most of the challenges in data centers and critical facilities of any size, in any location.


For order details, please contact our team (www.stmedia-asia.com/contact.html) or visit the Amazon online. Payment can be made by bank wire or credit card. Worldwide shipping will be provided.



    
    


  
  
  


About us

Strategic Media Asia (SMA) provides an interactive environment and opportunities for members of engineers to exchange professional views and experience on critical infrastructure and electrical and mechanical facilities through various training courses and site tour events.


In addition, our team is one of the CPD Course Providers of the Chartered Institution of Building Services Engineers (CIBSE).



For details, please visit http://www.stmedia-asia.com/trainings.html.



Tuesday, April 3, 2018

Critical Infrastructure and Buildings Energy Efficiency Ordinance



The Buildings Energy Efficiency Ordinance (BEEO) has come into full operation in Hong Kong since 21 September 2012. There are 3 key requirements of the Ordinance:-

(1) The developers or building owners of newly constructed buildings should ensure that the 4 key types of building services installation therein, namely, air-conditioning installation, lighting installation, electrical installation as well as lift and escalator installation, comply with the design standards of the Building Energy Code (BEC). 
(2) The responsible persons (i.e. owners, tenants or occupiers etc.) in buildings should ensure that the 4 key types of building services installation therein comply with the design standards of the BEC when “ major retrofitting works ” are carried out. 
(3) The owners of commercial buildings (including the commercial portions of composite buildings, e.g. shopping malls under residential storeys) should carry out energy audit for the 4 key types of central building services installation therein in accordance with the Energy Audit Code (EAC) every 10 years.


Mission-critical facilities and data centers are complex that are different from general buildings and require special design and operation knowledge and skill.


Developed by U.S. Department of Energy (DOE), the 3-day Data Center Energy Practitioner (DCEP) credential program helps engineers to evaluate the energy status and efficiency opportunities in the critical facilities. It also works with engineers to comply with the energy efficiency ordinance anywhere.

Successful candidates who complete the program in 3 days and pass the exams will gain Data Center Practitioner (DCEP) status. Their names and contact information will be available on the official website (http://datacenters.lbl.gov/dcep) as well as the certificates.




Level 1 Practitioners ("Generalist") - Day 1

To have a good understanding of 3 data center disciplines (HVAC - Heating, Ventilation and Air Conditioning, Electrical and IT-equipment) and provide broad recommendations based on the high-level DC Pro (Data Center Profiler) Tools and techniques

- Generalist Training Introduction
- Data Center Profiler (DC Pro) Overview
- IT Equipment
- Air Management
- Cooling Systems
- Electrical Systems
- Assessment Process Manual
- Data Center Profiler (DC Pro) Case Study
- End of Generalist Training / Exam (2-hour, open-book exam)


Level 2 Practitioners ("HVAC-Specialist") - Day 2 & 3

To address HVAC energy opportunities using in-depth Air Management Assessment Tool

- HVAC Specialist Training Introduction
- Air Handlers and Air Conditioners
- Liquid Cooling
- Chilled Water Plants
- Cooling System Controls
- Assessment Process
- Modeling Data Center HVAC Systems
- Environmental Requirements
- Airflow and Temperature Management
- DOE Air Management Tool
- End of HVAC Specialist Training / Exam (3-hour, open-book exam)


Program Speaker

Dr. Bob Sullivan, a Worldwide Eminent Educator and a Data Center Infrastructure Specialist, is the concept creator of Hot Aisle-Cold Aisle. He is the winner of Data Center Dynamics 2016 - Outstanding Contribution to the Data Center Industry Award. TechTarget named Dr. Bob is one of "five people who changed the data center" in August 13, 2010.


Program Details

Date: 16 - 18 May 2018 (Wednesday - Friday)
Time: 09:00 - 18:00
Venue: 19/F, New Victory House (OfficePlus), 103 - 93 Wing Lok Street, Sheung Wan, Hong Kong




Course materials, examinations and applications fees are all included.
For local registration details, please visit www.stmedia-asia.com/data-center-energy-practitioner-dcep.html.



About us

Strategic Media Asia (SMA) is one of the approved CPD course providers of the Chartered Institution of Building Services Engineers (CIBSE) UK. The team exists to provide an interactive environment and opportunities for members of ICT industry and facilities' engineers to exchange professional views and experience.

SMA connects IT, Facilities and Design. For the Data Center Design Consideration, please visit 

All topics focus on key components and provide technical advice and recommendations for designing a data center and critical facilities.



Tuesday, February 6, 2018

Learn Energy Audit for Mission-Critical Infrastructure (Program Developed by the U.S. Department of Energy)

Energy Monitoring?
Efficiency Improvement?
A comprehensive strategy to evaluate your critical infrastructure?




The data center industry and U.S. Department of Energy (DOE) partnered to develop a Data Center Energy Practitioner (DCEP) program which certifies energy practitioners to evaluate the energy status and efficiency opportunities in the mission-critical infrastructure worldwide.




The DCEP curriculum was updated in 2016 and formed collaboration with the industry to reinforce proven best practices and to introduce new tools and techniques in key areas such as IT equipment, air management, cooling systems, and electrical systems:-

Level 1 Practitioners ("Generalist", Day 1) will be expected to have a good understanding of 3 data center disciplines (HVAC - Heating, Ventilation and Air Conditioning, Electrical and IT-equipment) for providing broad recommendations based on the high-level DC Pro (Data Center Profiler) Tools.

Level 2 Practitioners ("HVAC-Specialist", Day 2 & 3) address HVAC energy opportunities using in-depth Air Management Assessment Tool.

Successful candidates who complete the 3-day program and pass the exams will gain Data Center Practitioner (DCEP) status by listing their names and contact information on the official website (http://datacenters.lbl.gov/dcep) as well as issuing certificates.


Level 1 Practitioners ("Generalist") - Day 1

- Generalist Training Introduction
- Data Center Profiler (DC Pro) Overview
- IT Equipment
- Air Management
- Cooling Systems
- Electrical Systems
- Assessment Process Manual
- Data Center Profiler (DC Pro) Case Study
- End of Generalist Training / Exam (2-hour, open-book exam)


Level 2 Practitioners ("HVAC-Specialist") - Day 2 & 3

- HVAC Specialist Training Introduction
- Air Handlers and Air Conditioners
- Liquid Cooling
- Chilled Water Plants
- Cooling System Controls
- Assessment Process
- Modeling Data Center HVAC Systems
- Environmental Requirements
- Airflow and Temperature Management
- DOE Air Management Tool
- End of HVAC Specialist Training / Exam (3-hour, open-book exam)

 
Official syllabus and program rundown -
http://datacenters.lbl.gov/resources/dcep-typical-training-agenda



Program Speaker

Dr. Bob Sullivan, a Worldwide Eminent Educator and a Data Center Infrastructure Specialist, is the concept creator of Hot Aisle-Cold Aisle. He is the winner of Data Center Dynamics 2016 - Outstanding Contribution to the Data Center Industry Award. TechTarget named Dr. Bob one of "five people who changed the data center" in August 13, 2010.


Exam and Certification

The Level 1 and Level 2 exams are open-book with multiple-choice questions following the training sessions. The result is either Pass or Fail. The passing score is 75%. There is a waiting period of 30 days to retake the exam(s).


Prerequisites to Gain the DCEP Designation (Level 2)

- 4 year technical degree with 3 years verifiable critical facilities design/operation experience; or
- 2 year technical degree with 6 years verifiable critical facilities design/operation experience; or
- 10 years verifiable critical facilities design/operation experience; and
- Completion of the 3-day instructor-led training; and
- Pass the exams of Level 1 and Level 2


Enrollment Details

Date: 16 - 18 May 2018 (Wednesday - Friday)
Time: 09:00 - 18:00
Venue: 19/F, New Victory House (OfficePlus), 103 - 93 Wing Lok Street, Sheung Wan, Hong Kong
Official Rate (3-day): US$2,900 (HK$22,800) per head


Course materials (in digital copy), examinations and applications fees are all included.
For enrollment and registration, please visit www.stmedia-asia.com/data-center-energy-practitioner-dcep.html.


Applications can be submitted online or by email. The copies of degree certificate(s) and projects / work experience / reference letters will be requested by the official Program Administrator (PA) in U.S.


"ANCIS Incorporated" is the Program Lead and authorised trainer of the Data Center Energy Practitioner (DCEP) program and "Strategic Media Asia Limited" is the approved program partner in Hong Kong for local administration.

Adverse Weather Arrangement - Events in the morning, afternoon or evening will be cancelled if typhoon signal No. 8 or above or black rainstorm warning is still hoisted after (or is announced by the Hong Kong Observatory to be hoisted at / after) 6:00 a.m., 11:00 a.m. and 4:00 p.m. respectively. Delegates will be notified when the class will be made up as soon as possible.


P.S. Think your team might also be interested? Pass it on ›


Strategic Media Asia Limited
Connecting IT, Facilities and Design

T (852) 2117 3893  |  F (852) 2184 9978

Room 403, 4th Floor, Dominion Centre, 43 - 59 Queen's Road East, Hong Kong
http://www.stmedia-asia.com  |  http://green-data.blogspot.com




Wednesday, October 25, 2017

Understand the Cooling and Ventilation System Design for Data Center


Air Conditioning System Design for Data Center
(23 - 24 March 2017, approved CPD course by CIBSE UK)


It targets to engineers involved in designing or handling HVAC (Heating, Ventilation and Air Conditioning) equipment for mission critical facilities, IT infrastructure and data center projects.

All sessions highlight design principles such as psychrometric chart, cooling load calculation / estimation, etc. and the design considerations such as air distribution, availability / redundancy, common mistakes, Computer Fluid Dynamic (CFD) model, integration with MEPs (Mechanical, Electrical and Plumbing system), etc.

You'll be able to make informed decisions about the best choices of cooling systems for mission critical purposes and how system can best meet the project goal and SLA (Service Level Agreement).


Date: 23 - 24 March 2017 (Thursday - Friday)
Time: 10:00 - 17:30
Venue: 14/F, On Lok Yuen Building, 25-27A Des Voeux Road Central, Hong Kong
Fee: Special rate for CIBSE / HKIE all membership classes



> Datacom Equipment Power Trends and Cooling Applications

-- Load trends and their application
-- Air cooling of computer equipment
-- Liquid cooling of computer equipment


> Design Consideration

-- Design criteria
-- HVAC load
-- Computer room cooling
-- Air distribution
-- Liquid cooling
-- Availability and redundancy
-- Controls
-- Integration with other MEP (Mechanical, Electrical and Plumbing) system
-- Computer Fluid Dynamics (CFD)


> Testing and Commissioning

-- Air cleanliness test
-- Heat load test
-- Factory acceptance test
-- Site acceptance test
-- Integrated performance test (IST)


> Energy Efficiency

-- Power usage effectiveness
-- Chilled water plant optimization
-- Water side and air side equipment
-- Part load operation
-- Controls and energy management
-- LEED certified data center
-- Building energy code


> Sustainable Design

-- Combined heat power plant (CHP)
-- Solar cooling
-- Geothermal cooling
-- Evaporative cooling
-- Air side economizers
-- Desiccant unit


For details, please visit http://www.stmedia-asia.com/newsletter_6.html.





Get Ready to Become a Registered Specialist Contractor (Ventilation)
(29 April & 6 May 2017, Saturday)


Designed for enterprises in ventilation / air-conditioning engineering - Technical Director (TD), Authorized Signatory (AS) or other officers, our speaker introduces the register requirement, interview technique, Buildings Ordinance, ventilation and fire safety, occupational safety, health and environmental protection, etc.

The preparatory course helps local engineers and enterprises to facilitate compliance with the Buildings Ordinance in Hong Kong and to get ready to become a Registered Specialist Contractor for Ventilation Works (RSC-V).


Date: 29 April + 6 May 2017 (Saturday) - 11th round
Time: 9:00 - 13:00 / 13:30
Venue: 14/F, On Lok Yuen Building, 25-27A Des Voeux Road Central, Hong Kong
Fee: Early bird discount available for payment & application made before March 17, 2017


The RSC-V preparatory course is also available online www.stmedia-asia.com/aircon.html.





About us


Strategic Media Asia (SMA) is one of the approved CPD course providers of the Chartered Institution of Building Services Engineers (CIBSE) UK. The team exists to provide an interactive environment and opportunities for members of ICT industry and facilities' engineers to exchange professional views and experience.

SMA connects IT, Facilities and Design. For the Data Center Consideration Series, please visit 


(1) Site Selection,
(2) Space Planning,
(3) Cooling,
(4) Redundancy,
(5) Fire Suppression,
(6) Meet Me Rooms,
(7) UPS Selection, and
(8) Raised Floor

All topics focus on key components and provide technical advices and recommendations for designing a data center and critical facilities.



Monday, October 19, 2015

Avoid 30 - 40% Wastage in Refrigeration & Air-conditioning (RAC) Systems

The wastage of energy and costs in Refrigeration and Air-conditioning (RAC) systems is a real challenge. AC’s that drip water into the street because of excessive condensation illustrate that the compressor is over-running to achieve the cooling output required in the rooms they serve. Refrigerators that require de-icing cycles to remove the build-up of ice on the evaporator unit, again graphically illustrate that the compressor is running longer than is needed to achieve the cooling required for the refrigerated produce.


The new technology* employs two temperature sensors in an algorithmic energy trading control arrangement to monitor the thermodynamic (room or space temperature) and the hydraulic (refrigerant supply) performance of the connected air conditioning, heating or refrigeration system. As a result it reduces up to 30-40% of the running time on the compressor which accounts for 95% of HVAC energy consumption.




Bundled with a 2-day CPD training in the Air-conditioning System Design for Data Center, this is a 1-hour information seminar introducing an innovative energy optimizer / economizer for compressor-based HVAC systems. It targets to HVAC practitioners such as consulting engineer, energy assessor, facilities managements and building services engineers.



* Internationally Patented - Optimized Refrigerant Supply (ORS®)

Demonstrated through a number of case studies, the seminar session showcases how ORS® prevents the wastage of energy and costs that arise from over-running the compressors. Since the compressor is by far the main consumer of electrical power in any RAC system, the avoided wastage is very significant and the session will illustrate that ORS® prevents wastage of energy and costs in the region of 30-40%.





CPD Training in Air Conditioning System Design for Data Center (2-day)

Date: November 5 - 6, 2015 (Thursday - Friday)
Time: 10:00 - 17:30 (with 1 hour lunch break)
Venue: 14/F, On Lok Yuen Building, 25-27A Des Voeux Road Central, Hong Kong


The 1 hour seminar session mentioned above (during 16:30 - 17:30, 5 November 2015) is sponsored by The Getz Corporation (HK) Limited and Agile8 Consulting Limited.


For details, please visit www.stmedia-asia.com/trainings.html.




About the Organizer


Strategic Media Asia Ltd (SMA) is one of the Approved CPD Course Providers of the Chartered Institution of Building Services Engineers (CIBSE). SMA exists to provide an interactive environment and opportunities for members of IDC industry and engineers to exchange professional views and experience on data center design, critical infrastructure system, electrical and mechanical facilities, etc.

SMA connects IT, Facilities and Design. For details, please visit our website at www.stmedia-asia.com/trainings.html.



Tuesday, September 15, 2015

Course in Air Conditioning System Design for Data Center


A data center houses hundred / thousand of IT equipment and servers for mission critical purpose. These IT facilities consume large amount of energy and generate heat during operations. Particular cooling strategies and power system design are therefore required for a data center.




This is an advanced learning section for data center design. It targets to engineers involved in designing or handling HVAC (Heating, Ventilation, and Air Conditioning) equipment for mission critical facilities and data center projects.




We introduces various classifications of HVAC systems and the associated distribution systems for mission critical facilities. Each system type is evaluated based on the performance for energy efficiency, water use and comfort performance. Participants are able to make informed decisions about the best choices of cooling systems for mission critical applications and how system can best meet your project goal and SLA (Service Level Agreement).




The course highlights design principles such as psychrometric chart, cooling load calculation / estimation, etc. and the design considerations such as air distribution, availability and redundancy, common mistakes, Computer Fluid Dynamic (CFD) model, integration with MEPs (Mechanical, Electrical and Water Plumb), etc.




Overall we train participants to understand different factors, from design, testing, commissioning, sustainability and efficiency, that significantly impact the cooling system of data centers.


  • Datacom Equipment Power Trends and Cooling Applications
    • (a) load trends and their application
    • (b) air cooling of computer equipment
    • (c) liquid cooling of computer equipment

  • Design Consideration
    • (a) design criteria
    • (b) HVAC load
    • (c) computer room cooling
    • (d) air distribution
    • (e) liquid cooling
    • (f) availability and redundancy
    • (g) integration with other MEP system
    • (h) controls
    • (i) computer fluid dynamics

  • Testing and Commissioning
    • (a) air cleanliness test
    • (b) heat load test
    • (c) factory acceptance test
    • (d) site acceptance test
    • (e) integrated performance test (IST)

  • Sustainable Design
    • (a) combined heat power plant (CHP)
    • (b) solar cooling
    • (c) geothermal cooling
    • (d) evaporative cooling
    • (e) air side economizers
    • (f) desiccant unit

  • Energy Efficiency
    • (a) power usage effectiveness
    • (b) chilled water plant optimization
    • (c) water side and air side equipment
    • (d) part load operation
    • (e) controls and energy management
    • (f) LEED certified data center
    • (g) building energy code


    For registration and course details, please visit www.stmedia-asia.com/newsletter_6.html.

    "Air Conditioning System Design for Data Center" is an approved CPD course by Chartered Institution of Building Services Engineers (CIBSE).



    About the Organizer - SMA


    Strategic Media Asia Ltd (SMA) is one of the Approved CPD Course Providers of the Chartered Institution of Building Services Engineers (CIBSE). SMA exists to provide an interactive environment and opportunities for members of IDC industry and engineers to exchange professional views and experience on data center design, critical infrastructure system, electrical and mechanical facilities, etc.

    SMA connects IT, Facilities and Design. For details, please visit our website at www.stmedia-asia.com/trainings.html.





    Wednesday, November 19, 2014

    Water Cooled or Air Cooled Chillers

    As per the critical purpose of a data center, all equipment must be reliable and easy to operate. It’s important to make sure the company’s focus can be on the critical nature of data center operations instead of HVAC (cooling) system management.

    Water cooled chillers and air cooled chillers are refrigeration systems normally used to cool fluids or dehumidify air in both commercial and industrial facilities. The components of water cooled chillers and air cooled chillers are very similar. Each product contains an evaporator, condenser, compressor, and an expansion valve. The primary difference is whether air or water is used to provide the condenser cooling.


    Water Cooled Vs Air Cooled

    An air-cooled chiller has a condenser that is cooled by the environment air. The air-cooled chillers are preferred for small or medium installations but lately the quality improvement in their structure, allows the usage, in modular type, for large installations also. An air-cooled chiller is preferred especially in cases that there is not enough water or the water is very expensive.





    The water-cooled chillers have water cooled condenser connected with cooling tower and are usually preferred for medium and large installations where there is sufficiency of water. In addition, they are also preferred in cases that is demanded constant performance of the system, independently of the ambient temperature (industrial air conditioning, air conditioning of digital systems etc), because the capacity of the water-cooled chillers are not affected by the ambient temperature fluctuations.





    Flexibility

    You may also note that air-cooled chillers have a much wider range in ambient operating temperatures. The wide ambient-temperature operating range allows designers' flexibility to standardize on chiller-plant designs, regardless of the data center location.


    Redundancy and Effectiveness

    Redundancy is essential for mission critical purpose-built data center. You should consider how long to bring the cooling system back to full load after power outages. In addition, the difficulties and cost effectiveness for installing 2N / N+1 cooling system should be carefully evaluated. Bare in mind water-cooled system should work with cooling towers and pumps.


    System Maintenance and Downtime

    Each chiller has basic maintenance requirements to ensure it functions at optimal levels. Though it is difficult to find a prefect cooling system with the lowest total cost of ownership (but competitive first costs), minimal operating & maintenance costs and a reduced risk of expensive downtime, we need to judged on the specific goals for every project.


    Install Location

    Large industrial chillers are commonly located in mechanical equipment rooms within the building close to the process in which they are cooling. Some industrial chillers may be located directly beside the process, depending on the size of the chiller and compressor. Some may even be placed completely outdoors such as rooftop of a building. Choosing which cooling system, therefore, largely depends on the building type, location, and use of the space.




    About SMA

    Strategic Media Asia (SMA), a critical infrastructure training and event organizer based in Hong Kong, provides an interactive environment and opportunities for members of IDC industry and engineers to exchange professional views and experience on critical infrastructure and E&M facilities.

    SMA is one of the CPD Course Providers of the Chartered Institution of Building Services Engineers (CIBSE).

    For details of other data center courses and seminars, please visit our website at http://www.stmedia-asia.com/trainings.html.



    Wednesday, October 15, 2014

    10 Recommendations for your Data Center

    When you are a data center manager or consulting-specifying engineer, very few things are more unsettling than the unexpected. We hope this list helps IT and engineering professionals better anticipate these issues and prepares them with the appropriate technologies, solutions, and best practices.




    Generally speaking we have 10 advice for your data center:


    High-density predictions finally come true

    After rapid growth early in the century, projections of double-digit rack densities have been slow to come to fruition. Average densities hovered between 6.0 and 7.4 kW per rack from 2006 to 2009, but the most recent Data Center Users’ Group (DCUG) survey predicted average rack densities will reach 12.0 kW within three years. That puts a premium on adequate UPS capacity and power distribution as well as cooling to handle the corresponding heat output.


    Servers may be replaced three times before UPS or cooling systems renewal

    Server refreshes happen approximately every three years. Cooling and UPS systems are expected to last much longer—sometimes decades. That means the infrastructure that organizations invest in today must be able to support—or, more accurately, scale to support—servers that may be two, three, or even four generations removed from today’s models. Modular solutions can scale to meet both short- and long-term requirements. Engineers will need to consider and make the necessary adjustments and allocations regarding day-to-day servicing and maintenance of the longer lasting power and cooling equipment.


    Down time is expensive

    We don't want it. The most common causes of downtime are UPS battery failure and exceeding UPS capacity. Avoid those problems by investing in the right UPS—adequately sized to support the load—and proactively monitoring and maintaining batteries. This gives engineers an opportunity to share best practices with clients and recommend battery monitoring solutions and high-end availability architecture. They can use the cost of downtime information to support recommendations and ensure clients understand how they can implement design changes and modifications that will improve availability.


    Energy rebates are available for energy efficiency upgrades

    Many utility providers offer energy rebates and incentives for data centers that make energy efficiency improvements. This presents an opportunity for engineers to propose high-efficiency designs and help clients receive reimbursements for upgrading legacy equipment with high-efficiency power and cooling systems. Clients may also look to engineers to assist with the often lengthy application process. Once the reimbursement has been approved, utilities will request information on actual project costs and may require follow-up measurement and verification to determine actual energy savings.


    Industry codes are playing a larger role in cooling strategy

    In the 2010 edition of ASHRAE 90.1: Energy Standard for Buildings Except Low-Rise Residential Buildings, the SCOP (seasonal coefficient of performance) rating was expanded to include data centers. Codes are becoming more numerous and impacting data center cooling strategies and technology developments. It is important that engineers keep abreast of new codes and regulations and the latest technologies that enable compliance.


    Monitoring can be a mess

    IT managers have more visibility into their data centers than ever before, but accessing and making sense of the data that comes with that visibility can be a daunting task. According to an Emerson Network Power survey of data center professionals, data center managers use, on average, at least four different software platforms to manage their physical infrastructure. Of those surveyed, 41% say they produce three or more reports for their supervisors every month, and 34% say it takes three hours or more to prepare those reports. The solution? Move toward a single monitoring and management platform that can consolidate that information and proactively manage the infrastructure to improve energy and operational efficiency, and even availability.


    IT Person may be in charge of the building’s HVAC system

    The gap between IT and facilities is shrinking. Traditionally, IT and data center managers have had to work through facilities when they needed more power or cooling to support increasing IT needs. That process is being streamlined. For engineers, it is important that they now incorporate all of these players into the design process. Gone are the days when the engineer had to work with only one or two individuals, usually from the facility side. Now it is a complex ecosystem comprised of IT, operations, facilities, and sometimes procurement.


    That patchwork data center needs to be a quilt

    In the past, data center managers and engineers freely mixed and matched components from various vendors because those systems worked together only tangentially. However, the advent of increasingly intelligent, dynamic infrastructure technologies and monitoring and management systems has increased the amount of actionable data across the data center, delivering real-time modeling capabilities that enable significant operational efficiency. IT and infrastructure systems still can work independently, but to truly leverage the full extent of their capabilities, integration is imperative.


    Data center on demand is a reality

    The days of lengthy design, order and deployment delays are over. Today there are modular, integrated, rapidly deployable data center solutions for any space. Integrated, virtually plug-and-play solutions that include rack, server, and power and cooling can be installed easily in a closet or conference room. On the larger end, containerized data centers can be used to quickly establish a network or to add capacity to an existing data center.


    IT loads vary a lot

    Many industries see extreme peaks and valleys in their network usage. Financial institutions, for example, may see heavy use during traditional business hours and virtually nothing overnight. Holiday shopping and tax seasons also can create unusual spikes in IT activity. Businesses depending on their IT systems during these times need to have the capacity to handle those peaks but often operate inefficiently during the valleys. A scalable infrastructure with intelligent controls can adjust to those highs and lows to ensure efficient operation.



    About SMA

    Strategic Media Asia (SMA) is one of the CPD Course Providers of the Chartered Institution of Building Services Engineers (CIBSE).

    SMA, a critical infrastructure training and event organizer based in Hong Kong, provides an interactive environment and opportunities for members of IDC industry and engineers to exchange professional views and experience on critical infrastructure and E&M facilities.

    For details of other data center courses and seminars, please visit our website at http://www.stmedia-asia.com/trainings.html.


    Monday, October 28, 2013

    Now for Sale - Training Manual of "HVAC Design and Cooling Specialist for Data Center Efficiency"


    HVAC DESIGN & COOLING SPECIALIST FOR DATA CENTER EFFICIENCY


    This is a training manual developed by a team of experienced Chartered Engineers (CEng). For data center operators and facilities managers, we help you to understand key challenges and consider different factors, from design, testing, commissioning, sustainability and efficiency, of HVAC (Heating, Ventilation, and Air Conditioning) system for data centers.

    In addition, the manual details the guidelines of data centers’ cooling criteria, HVAC load development, air distribution, liquid cooling, contamination, availability and redundancy, Computer Fluid Dynamic (CFD) model, energy efficiency, etc., from general theory to technical implementation.

    To predict a data center’s power and heat loads over the years ahead is the hardest thing for data center owners. It introduces datacom power trends and cooling applications showing expected growth in power density for different types of computing equipment out to 2020.


    Total Number of Page: 106
    Total Number of Slide Contained: 204
    Size: 210mm x 300mm x 10mm
    Language: English
    Color: Black & White
    CD / Soft Copy: Not Included

    THE MANUAL CONTENT



    Datacom Equipment Power Trends and Cooling Applications

    (a) load trends and their applications
    (b) air cooling and liquid cooling of computer equipment

    Design Consideration

    (a) design criteria and HVAC load
    (b) computer room cooling and air distribution
    (c) liquid cooling
    (d) availability and redundancy
    (e) integration with other MEP system
    (f) controls and computer fluid dynamics

    Testing and Commissioning

    (a) air cleanliness test, heat load test
    (b) factory acceptance test and site acceptance test
    (c) integrated performance test (IST)

    Sustainable Design

    (a) combined heat power plant (CHP)
    (b) solar, geothermal and evaporative cooling method
    (c) air side economizers
    (d) desiccant unit

    Energy Efficiency

    (a) power usage effectiveness (PUE)
    (b) chilled water plant optimization
    (c) water side and air side equipment
    (d) part load operation
    (e) controls and energy management
    (f) LEED certified data center
    (g) building energy code















    ORDER METHOD

    Please contact us at info@stmedia-asia.com
    The manual is also available on eBay: http://www.ebay.com/usr/st-media


    Tuesday, May 14, 2013

    How to Upgrade your Data Center and Critical Facilities?


    An aging data center may no longer be able to meet the power, cooling and structural demands of advancing technologies, but few businesses have the time or the capital to build new facilities.

    Fortunately, organizations can extend the working life of their data center by renovating the facility by making changes that cost little to nothing. Data center upgrades allow a business to adopt new standards and improve existing infrastructures to introduce new technologies with better performance and more efficiency.

    There are several data center design changes that can extend the life of your facilities and data center


    (1) Elevate your data center temperature



    The data center's working temperature has long been a subject of myth and legend, but research and initiatives from industry organizations such as  the American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE) have found that data centers don't need to be cooled like meat lockers. Modern servers and other computing equipment can operate reliably at elevated temperatures.

    A 2008 ASHRAE document recommended a temperature range from 65 to 80 degrees Fahrenheit for Class 1 data center equipment. Recommendations in 2011 broadened the allowable temperature range from 59 to 90 degrees Fahrenheit for enterprise-class servers and 41 to 113 degrees Fahrenheit for appropriately designed servers and other equipment.

    In addition, the extended temperature range also makes it possible to adopt alternative or supplemental cooling schemes (at least during certain parts of the day), such as free air or air/water economizers -- cooling technologies that might not have even been considered when your data center was first built.


    (2) Upgrade servers and systems for better consolidation and efficiency



    Servers consume the majority of energy in a data center -- primarily in the processors and memory components. Organizations can gain significant energy efficiency by upgrading servers to more efficient models during normal technology refresh cycles where capital is already budgeted. The newer server may also provide greater amounts of memory, allowing a virtualized server to provide much higher levels of consolidation than earlier servers.

    This means the same amount of computing work can be done with far fewer servers, saving equipment capital and generating only a fraction of the heat for a data center's cooling system to contend with.


    (3) Change the system layout and rack layout for power and cooling efficiency


    It is a matter of Hot Aisle & Cold Aisle.

    Suppose you had a traditional data center where a large computer room air-conditioning unit (CRAC) cooled the room. Now imagine that a server refresh and consolidation project slashed the number of servers by 75%. With just a quarter of the original server count in this example, it may be possible to rearrange the remaining servers in far fewer racks and use containment to enclose the remaining servers. This limits the air volume that must be cooled, significantly reducing the amount of mechanical cooling needed and allowing for alternative cooling technologies.

    In other cases, under-floor cooling may be more effective by reworking the electrical cabling, network cabling and water lines that cross below the floor.

    A poorly designed and haphazard layout can obstruct cooling air distribution, making more work for the mechanical cooling unit. In addition, any water distribution increases the potential for damage to electrical and network wiring, so many organizations opt to route electrical and network wiring overhead -- leaving water lines under-floor -- and may even upgrade network cabling to allow for future bandwidth improvements.

    Don't overlook the rack space itself. For example, fully populating racks can concentrate more equipment in less space, making any containment -- and associated cooling -- more effective. And some racks may not be deep enough to accommodate new generations of computing equipment. This can lead to wiring congestion and airflow problems.


    (4) Consider supplemental or alternative cooling schemes



    Mechanical heating, ventilation and air conditioning (HVAC) systems are a staple of the modern data center, but they are also costly, energy-hungry and a potential single-point of failure in data center availability. If the cooling system fails, a data center can overheat in a matter of minutes.

    Data center renovations often focus on ways to supplement or replace traditional mechanical cooling with alternative equipment or methods that are enabled by higher operating temperatures, better containment and less equipment.

    Popular alternative cooling approaches include chilled water heat exchangers (water economizers), evaporation cooling and even free air cooling (air economizers).

    These methods, however, require affordable environmental resources that are suited to the task and available for much of the day. For example, using cold lake water to drive a water economizer requires a nearby lake. In many cases, these alternative methods are added to supplement traditional HVAC, lowering run times and power needs.

    Organizations that must continue using HVAC are taking a fresh look at the cooling system's capacity and efficiency. The potential problem is that a large, aging HVAC system runs even less efficiently if it is used infrequently; easing the cooling load on your legacy HVAC system might actually cost more and be harder on the mechanical system.

    This means that raising operating temperatures and reducing the amount of computing equipment may justify a smaller cooling system.


    (5) Consider availability and reliability issues in power distribution


    Upgrading the uninterrupted power supply (UPS) systems to a newer model can improve UPS energy efficiency and provide more intelligent power monitoring/measurement capabilities that complement a data center infrastructure management scheme.

    When a UPS is replaced, it is hopefully with a higher efficiency system, and may also become a redundant [N+1] configuration and possibly even a modular or incremental capacity solution. Power equipment upgrades may spawn broader wiring and distribution upgrades in older buildings.

    It is also a common practice to upgrade in-rack power distribution units (PDUs) to add intelligent power management, along with rack temperature and humidity monitoring. With UPS and PDU upgrades together, an organization can gather energy use data and make more informed decisions about power costs in the data center.


    (6) Finally, consider the availability of data center power


    Organizations with aging, unreliable or overtaxed power grids may consider local co-generation options to ensure uninterrupted power. Traditional diesel generators are quickly giving way to more efficient and environmentally friendly alternatives, including solid oxide fuel cells such as Bloom Energy Servers or solar arrays to produce some amount of local electricity. If it's not possible to install local co-generation on-site, it may be possible to contract with regional co-generation providers for supplemental electricity.



    About The Blogger

    Strategic Media Asia (SMA, www.stmedia-asia.com) is a leading technical training and event organizer for corporations specialized in data center design & build, E&M facilities, telecom, ICT, finance and colocation. Currently, SMA delivers a series of data center trainings and qualification programs in Hong Kong, Taiwan and Macau.

    All these events / training seminars are designed to support the leadership needs of senior executives (Chief Information Officers, IT Directors / Managers, Facilities Managers, company decision makers, etc.) and to provide useful and applicable knowledge.




    Monday, March 18, 2013

    Data Center Design & Critical Facilities - Join the Training Seminar & Event Series




    Half Day Event on IT & Critical Infrastructure


    ICT technology is widely used in a city’s infrastructure development, such as large scale data centres, building and architectural modelling, optimal electric power generation and distribution and supervisory control and data acquisition of railway and transportation systems. There are more and more stakeholders such as researchers, developers, providers, and applications/users involved in the corresponding technology development.


    The half day event aims to provide a forum for government officials, university researchers, and key industry professionals to share with other fellow colleagues the latest ICT technology development and applications, as well as its potential for local ICT industry.


    Date: 12 April 2013
    Venue: The Hong Kong Productivity Council Building
    Organizer: ICT Section of IET Hong Kong and OGCIO, the HKSAR Government


    Event Detail: http://www.theiet.org/events/local/175263.cfm



    Training Seminars on Data Center Facilities & HVAC Design
    Bundled with Data Center Technical Visit on 28 March 2013


    Further to the half day event, we introduce critical infrastructure systems that support a typical data center and prepare individuals to fully understand the main components that facilitate data center design & build by exploring the standards of TIA-942 and Uptime Tier levels.


    The training seminars explain key challenges and consider different criteria, from design, testing, commissioning, sustainability and efficiency, of HVAC (Heating, Ventilation, and Air Conditioning) system in a data center.


    Part I – Data Center Facilities Design and Infrastructure Engineering
    Date: 18 – 19 July 2013 (Wednesday - Thursday, 2-day)

    Part II – HVAC Design and Cooling Specialist for Data Center
    Date: To be announced very soon


    Target Audience:
    Data Center Operators, Consultants, Facilities Managers, E&M Engineers, IT Management, etc.


    Time: 10:00 – 17:30
    Venue: 1st Floor, Innocentre, 72 Tat Chee Avenue, Kowloon Tong, Hong Kong
    Special Rate: 10% Discount on Registration Fee


    Speakers:

    C.K. Chan, CEng, MIET, MHKIE, CSME, REW H0 C0
    Edmond Fok, CEng, IntPE, MCIBSE, MIFireE, REW H0 C0
    Herman Poon, CEng, Eur. Ing., CITP, MBCS, MHKIE
    Joe Tang, CEng, MIET, MCIBSE, MASHRAE



    Worldwide Accredited Data Center Qualification
    Jointly Organised with CNet Training, UK


    Certified Data Center Management Professional (CDCMP)
    Core Unit (3-day) + Advanced Professional Unit (4-day)
    Accredited by BTEC, Edexcel and BICSI


    Commencing Date: 19 June 2013


    Instructors from UK will lead the whole program:
    http://www.cnet-training.com/delivered-by-expert-instructors/


    Enrolment & Registration Details


    Please refer to our website (www.stmedia-asia.com/trainings.html) or a registration form attached. A data center technical visit (sponsored by KDDI Hong Kong Limited) will be arranged. For detail, please visit www.stmedia-asia.com/data-center-tour.html

    Friday, August 10, 2012

    Cloud Computing and Data Center Facilities Design

    During the early days of data center design and management, facilities teams were able to run their own environments with only minimal interaction with other IT teams. Over the past few years, however, the sitution has been changed.


    Impacts of Cloud


    The effects of the cloud take numerous forms. When it comes to data center design and management, cloud computing can be a truly powerful tool. Consider the following:

    • Datacenter consolidation. With advancements in virtualization, IT facilities managers can now reduce the amount of physical data center resources that are directly in use. This means fewer servers and better resource utilization. This reduction in data center space can result in more intelligent computing and better cost management.

    • Monitoring and management. As a direct result of cloud computing, new monitoring and management tools have made the modern data center easier to control. Monitoring features are able to look at metrics such as workload balancing, server environmental statistics and even check for alerts and alarms. Working in a distributed environment settings has created the direct need for better management software. Facilities managers should take this into consideration and see how cloud-ready tools can help their environment.

    • Reconsidering HVAC. With a reduction in the physical footprint as a result of cloud computing and virtualization, facilities administrators are able to create a more efficient environment with better cooling and management practices. With cloud computing, there will be new requirements as far as how much environmental control will be required. This can be either a positive or negative, depending on the cloud approach. If a private cloud is being built onsite with new, integrated architecture, there may actually be a need for more cooling requirements, even if the footprint is less. On the other hand, offloading a cloud platform to a public provider can result in less cooling and power needs.

    • Disaster Recovery. A big benefit of cloud computing is the ability to replicate an entire data center to a remote facility (or numerous remote facilities). The other major consideration is the fact that these cloud-based DR data centers can be provisioned on demand with a pay-as-you-go model. This means facilities administrators won’t have to worry about their remote infrastructure until the time comes for a DR event. Of course, testing and constant monitoring of the secondary environment is always key.

    • On-demand computing. Instead of having systems being in a state of always on – facilities and IT teams can coordinate to ensure that a portion of that infrastructure is cloud-ready and provisioned only on demand. This means fewer data center components and less idle machines. More environments are looking to cloud providers to help them offload certain types of workloads and better their physical data center efficiencies.

    • Data management and warehousing. The conversation around “big data” is growing. More environments are seeking answers and solutions to how they can better manage their ever expanding database needs. Many times this means adding more shelves to a SAN and storing yet more data onsite. With cloud computing, facilities managers can leverage outside, WAN-based resources, to host some of their data needs. This means possible offloading or archiving massive amounts of data for quick retrieval, but making it all cloud-based.

    • Decentralizing the data center. Resiliency, redundancy and efficiency are always at the top of any facilities person’s list. A part of that process is to reduce single points of failure within a data center as well as making data more quickly to the end-user. With cloud computing, facilities can extend their environment and utilize more resources on-demand. This decentralized methodology can help offload hardware from an existing data center, create a more redundant system, and ensure that data can be placed closer to the end-user.

    Thursday, August 2, 2012

    Data Center Raised Floor and Cooling System

    Data Center Executives are addressing the cooling infrastructure demands with a full line of airflow management and in-floor cooling solutions. The continued adoption of high density equipment, virtualization and cloud computing strategies requires the cooling infrastructure of a data center to be capable of adapting to high and often variable heat loads while offering superior energy efficiency.

    There are line of in-floor cooling products for raised floor data centers can nearly eliminate by-pass air and save significant energy. Using directional airflow and variable-air-volume dampers, the data center can instantly react to any variation in utilization to match cooling with the heat load at the rack level. Some data center also provide fan assisted airflow to eliminate hot spots or implement high-density equipment in a current raised floor facilities without significant capital investment.

    In addition, a full line of containment systems and air sealing grommets is designed to help reduce by-pass airflow, improve energy efficiency and increase data center capacity. More information can be found below.




    Electronically controlled variable air volume damper used to adjusts the amount of air to meet the specific needs of the rack it services.




    Fan assist module is designed to provide a blast of cooling through an individual airflow panel. This powerful solution is ideal for solving the toughest hot spots in a data center.




    Grate panels the airflow angle toward the equipment achieving a 93% Total Air Capture (TAC) rate by a standard server rack.




    Full line panels have the unmatched ability to handle heat density needs of the most demanding mission critical facilities.




    Blade damper allows the user infinite airflow adjustability when it comes to airflow from any airflow panel.




    Seal a variety of openings in the aisle, blocking bypass airflow and maximizing cooling performance.






    The rack shield isolation system is designed to capture subfloor supply and dedicate it to the computer thermal load, thereby ensuring that cold supply air will not spill across the raised floor.




    Hot and cold aisle containment, Partition, Strip Doors, Retracting Roofs, Hinged and Sliding Doors all work together to create the perfect containment solution.





    The CRAC Hood Extension is a ceiling return duct that connects the top of the CRAC unit directly to a ceiling return plenum greatly increasing cooling capacity and efficiency by capturing hot exhaust air and channeling it directly into the CRAC unit.