Best Practices for Critical Facilities Design, Efficiency and Operations
Showing posts with label facilities. Show all posts
Showing posts with label facilities. Show all posts
Monday, August 25, 2014
1 Day Refresher Training / Fundamental Course in Data Center Facilities and Operations
Data centers come in different sizes - whether it's four servers in a closet or hundreds of servers in a building - which provide mission critical functions for enterprises and public services.
We are pleased to announce that a 1-day Refresher Training / Fundamental Course in Data Center Facilities and Operations will be launched in Hong Kong. The course outlines a critical infrastructure system supports a typical data center and the main components facilitate a data center operation. It also introduces the standards of TIA-942, Uptime and Tier Levels.
The training is designed for junior operators, engineers and system administrators to acquire basic knowledge in data center critical facilities, on top of the IT system and daily operations.
- What is Data Center
- Applications of Data Center
- Who are the users
- Users’ expectations
- Inside a Data Center – IT, E&M services, Facilities supports
- Data Center Configurations – Architectural, Structural, MEFPD, Network
- Glossary – Resilience, Tier Levels, Redundancy
- Operating a Data Center
- Loss Prevention
- Maintenance Management
- Facilities Supports – MEFPD (Mechanical, Electrical, Fire, Plumb and Drain) Services
- Specific Requirements for Facilities
- Operations Highlights
- Sustainable Management
- Performance Assessments
DOWNLOAD DETAILED SYLLABUS
For details, please visit http://www.stmedia-asia.com/data-center-facilities-operations.html
About the Organizer
Strategic Media Asia (SMA) is one of the CPD Course Providers of the Chartered Institution of Building Services Engineers (CIBSE).
SMA is a critical infrastructure training, seminar and event organizer for corporations and professionals specialized in data center design & build, E&M facilities, structured cabling system, telecommunication, ICT and financial IT services.
For details of other data center courses and seminars, please visit our website at http://www.stmedia-asia.com/trainings.html.
Labels:
Data Center,
Data Center Course,
Data Center Operations,
facilities,
Redundancy,
Resilience,
Tier Levels
Location:
Hong Kong
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.
For detail, please visit SMA's Technical Training Seminars & Data Center Qualification Programs.
Labels:
airflow,
ASHRAE,
CRAC,
Data Center,
Data Center Design,
Efficiency,
Energy,
energy efficinecy,
Energy Management,
facilities,
HVAC,
Infrastructure,
PDU,
Power,
Redundancy,
UPS
Location:
Hong Kong
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.
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:
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.
Labels:
Cloud Computing,
Cooling,
cost management,
Data Center,
Data Centre,
Efficiency,
facilities,
HVAC,
Infrastructure,
Power
Location:
香港
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