flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Slash energy consumption in data centers with liquid-based ‘immersive-cooling’ technology

Slash energy consumption in data centers with liquid-based ‘immersive-cooling’ technology

A new technology promises to push the limits of data center energy efficiency by using liquid instead of air to cool the servers.


By David Barista, Editor-in-Chief | October 14, 2014
Immersive cooling systems use a liquid instead of air to cool the servers. The b
Immersive cooling systems use a liquid instead of air to cool the servers. The basic idea is to submerge the motherboards in tan

In the rush to slash energy consumption in power-hungry data centers, design teams, equipment manufacturers, and tech companies have been developing clever, low-energy cooling solutions—from Facebook’s open-rack server setup with exposed motherboards, to Skanska’s eOPTI-TRAX liquid refrigerant coil system, to Google’s evaporative cooling schemes.

Solutions like these have helped data center facility operators achieve unprecedented energy performance levels, with power utilization effectiveness (PUE) ratios dipping below 1.10 in some instances. This means that less than 10% of the total energy consumption in a facility is attributed to noncomputing functions, such as air-conditioning and lighting.

Now, a new technology promises to push the limits of data center energy efficiency even further. Called immersive cooling, it uses a liquid instead of air to cool the servers. LiquidCool Solutions, Green Revolution, and 3M are among the pioneers of this technology. Each system works a bit differently, but the basic idea is to submerge the motherboards in tanks filled with nonconductive fluid, which absorbs the heat generated by the processors. 

LiquidCool Solutions, for example, uses an enclosed server module and pumps dielectric fluid through the server enclosure. Green Revolution uses a tub full of dielectric oil and circulates the liquid through the tubs. 3M also uses the tub approach, but the fluid boils and then is condensed to reject the heat.

By using liquid-based cooling at the server level, the need for air-conditioning is greatly reduced, or even eliminated in some climates. The same goes for traditional HVAC equipment and systems—chillers, fan units, raised floors, and so on. 

 


The Allied Control 500 kW immersion-cooled data center in Hong Kong is capable of delivering a PUE of just 1.02. The standard, 19-inch server racks use 3M Novec Engineered Fluids to enable tight component packaging for greater computing power in less space, according to Allied. Its open-bath design permits easy access to hardware and eliminates the need for pressure vessel enclosures and charging/recovery systems. PHOTO: COURTESY ALLIED CONTROL 

 

“In most parts of the world, compressorized cooling would not be required with immersive cooling, since the liquid temperatures can be at a level where direct heat rejection using outdoor condensers or cooling towers would be sufficient,” says Thomas Squillo, PE, LEED AP, Vice President with Environmental Systems Design, who is currently researching the technology for the firm’s data center clients. “The fan energy is also eliminated, both in the HVAC system and in the server itself. Fluid pumping energy is very low.”

Other advantages of the cooling technology, according to Squillo:
• Increased performance and service life of the computer chips by eliminating heat buildup and problems related to contaminated air and dust.
• Ability to deploy data centers in extremely harsh environments without greatly impacting energy performance.
• Potential construction cost savings by downsizing or eliminating traditional HVAC systems. 

Other than a few pilot projects, including a Bitcoin mining data center in Hong Kong and a Lawrence Berkeley National Laboratory-led installation in Chippewa Falls, Wis., immersive cooling technology is largely untested. A year into the Bitcoin pilot, the data center operator reported a 95% reduction in cooling costs. 

AEC professionals are starting to realize the potential for immersive cooling, especially for high-performance computing centers and consolidated, high-density data centers. 

“Large data centers that have many homogenous machines at high density—like those operated by Internet and cloud providers—are a good application,” says Squillo. “Small footprint and minimal energy use are very important due to the volume of servers. These can be deployed in remote areas where space and energy are cheap, but where air quality may be a concern, without having to worry about the data center air.”

 

TRICKY DESIGN CONSIDERATIONS

Before the technology can be implemented, says Squillo, several nettlesome design factors specific to immersive cooling have to be addressed:
• Piping distribution to the racks and cooling units requires redundancy and valving to accommodate equipment maintenance without disrupting server performance.
• Additional equipment and space are needed to drain fluid from the tanks for server maintenance.
• Local code requirements may limit the amount of fluid that can be stored in a single room.
• For the foreseeable future, it’s unlikely that a large data center would be 100% liquid-immersion cooled. This means provisions will have to be made for both air- and liquid-cooling systems, which will require additional space in the data hall and mechanical room.

“I think that some form of this technology will definitely be the direction the data center market will take in the future,” says Squillo. “The market just needs to mature enough for owners to trust the technology and demand servers that are designed for a particular type of liquid cooling. In the short term, I see large companies and server manufacturers doing small-scale installations to test the concept, before wanting to implement it at a large scale.”

Related Stories

| Apr 25, 2014

How the 'digital natives' will transform your Building Team

The newest generation to enter the workforce is like no other that has come before it. This cohort is the first to grow up with the Internet, mobile technologies, and an “always connected” lifestyle.

| Apr 25, 2014

A radiant barrier FAQ: Everything you wanted to know but were afraid to ask

There are many examples of materials developed for the space program making their way into everyday life and radiant barriers are just that. SPONSORED CONTENT

| Apr 25, 2014

6 winners selected for the Architectural League Prize

The Architectural League Prize, created in 1981, "recognizes exemplary and provocative work by young practitioners and provides a public forum for the exchange of their ideas," according to The Architectural League. 

| Apr 24, 2014

Unbuilt and Famous: LEGO releases box set of Bjarke Ingels' LEGO museum

LEGO Architecture has created a box set that customers can use to build replicas of the LEGO Museum, which is not yet built in real life. The museum, designed by the Bjarke Ingels Group, will commemorate the history of LEGO.

| Apr 23, 2014

Ahead of the crowd: How architects can utilize crowdsourcing for project planning

Advanced methods of data collection, applied both prior to design and after opening, are bringing a new focus to the entire planning process.

| Apr 23, 2014

Developers change gears at Atlantic Yards after high-rise modular proves difficult

At 32 stories, the B2 residential tower at Atlantic Yards has been widely lauded as a bellwether for modular construction. But only five floors have been completed in 18 months.

| Apr 23, 2014

Experimental bot transfers CAD plans onto construction sites

The Archibot is intended to take technical data and translate it into full-scale physical markings on construction sites.

| Apr 23, 2014

Mean and Green: Top 10 green building projects for 2014 [slideshow]

The American Institute of Architects' Committee on the Environment has selected the top ten examples of sustainable architecture and ecological design projects that protect and enhance the environment. Projects range from a project for Portland's homeless to public parks to a LEED Platinum campus center.

| Apr 23, 2014

Architecture Billings Index dips in March

The March ABI score was 48.8, down sharply from a mark of 50.7 in February. This score reflects a decrease in design services.

Sponsored | | Apr 23, 2014

Ridgewood High satisfies privacy, daylight and code requirements with fire rated glass

For a recent renovation of a stairwell and exit corridors at Ridgewood High School in Norridge, Ill., the design team specified SuperLite II-XL 60 in GPX Framing for its optical clarity, storefront-like appearance, and high STC ratings.

boombox1
boombox2
native1

More In Category




halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021