Heat recovery
Data centers have made many improvements towards sustainability over the last few decades. This covers everything from reducing power usage effectiveness (PUE) and carbon usage effectiveness (CUE), to improving water usage effectiveness (WUE). But, now it is time to take the next revolutionary leap for the data center industry.
By taking care of waste heat, data centers can also be energy suppliers. This not only increases overall profitability, but it also improves the metrics of their energy reuse effectiveness (ERE).
The cooling process is one of the highest contributors to electricity usage in your average data center. It also accounts for higher operational costs and significant environmental concerns due its carbon footprint. So, harnessing this energy in a heat recovery process will mean that the waste energy is used in other applications and the growing impact is reduced.
With that said, there are some challenges to recycling dater center heat, as the heating activity can often require a higher temperature than the cooling water found in your average data center. Luckily, with a heat pump, you can fix this problem and reach the required temperature.
What's best of all, it can actually benefit the cooling performance of your system!
Heat reuse opportunities
Data centers have the potential to contribute to creating a more sustainable environment with the right cooling technology inside. Thanks to the fast development of this technology, we are able to convert the waste heat emitted from IT equipment into a rage of temperatures for many new applications. In other words, we can improve data center heat recovery to accommodate the growing capacity per rack, reduce electricity usage in the industry, and improve overall carbon emissions.
With that, here are different cooling methods available, their corresponding temperatures, and examples of the heat reuse opportunities:
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Direct heat recovery
When the process temperature requirements for waste heat from a dater center is low, it is possible to connect the consumer to the cooling loop without increasing temperature levels. This is an ideal scenario, as adding a heat pump to increase the temperature requires electricity.
Thanks to the growing liquid-to-liquid cooling technology we can improve efficiency and recover more heat when the temperature demands are higher. Adding a plate heat exchanger is recommended here, as it helps avoid interference between two systems and acts as a system breaker.
Examples of applications that can use direct heat are space heating, green houses, insect farms, fish farms, algae farms, desalination plants, wood- and biomass-drying and much more.
Heat recovery using a heat pump
If the required process temperature is higher than the temperature of the cooling water from the data center, a heat pump can be connected to increase the temperature. A heat pump works as an inverted fridge; the cooling water from the data center is used to evaporate a synthetic freon or a natural refrigerant. The chosen refrigerant is pressurized in a compressor so that it can be released at a higher temperature in a condenser. This heat can then be used in the industry process, district heating water, or domestic hot water for example.
To maximize energy efficiency and minimize power consumption in the compressor, a heat pump with a high Coefficient of Performance (COP) should be used. The most sustainable solution, with the highest COP, is to use a natural refrigerant such as carbon dioxide or ammonia. Combine one of these natural refrigerants with a brazed or semi welded plate heat exchanger for the most energy efficient results.
In case of seasonal variations, a heat pump can be combined with other cooling solutions (such as free cooling or chillers) to achieve optimal system efficiency.
Multidimensional savings
The combination of waste heat recovery and a well designed plate heat exchanger will improve the cost efficiency and sustainability of a data center in many ways.
What's more, heat recovery solutions are key to accelerating the transition towards net-zero emissions. In this video you will learn about efficiency metrics and the role that waste heat recovery plays in creating a sustainable data center.
Heat recovery solutions
How do we design data centers on a more sustainable scale? Well, it is important to find the right temperatures that suit the cooling process as much as the heating process. We have the solution. By combining a heat pump, natural refrigerants, and an Alfa Laval plate heat exchanger you can achieve a higher COP (Coefficient Of Performance). This will allow you to reach the desired temperatures and enhance your cooling system performance at the same time. It's a win win.
At Alfa Laval we have the leading expertise to help you optimize your cooling and waste heat recovery. Watch this video of our experts, Christian Kempe and Jesper Olsen, to learn more about how to design sustainable data centers.
The benefits of plate heat exchangers
- Enable heat recovery
- Efficient system breaker to secure interference and responsibility
- Volume isolation
- Reduce and simplify maintenance
- Reduce the cost of cooling your production
- Certified performance in accordance with AHRI regulations
효율성 제고
알파라발의 판형 열교환기는 증발기처럼 같거나 작은 온도 차이로도 작동할 수 있습니다. 이러한 효율성을 최대한 활용하기 위해 당사는 U-Turn 분리기를 개발했습니다. 이 효율적인 모듈은 매우 컴팩트하며 모듈을 벽 가까이나 메인 스키드 주변에 설치할 수 있도록 연결부가 그룹화되어 있습니다.
- 천연 암모니아 냉매용으로 설계
- 압력 강하 손실 최소화, 에너지 효율 극대화
- 근접 온도 접근, 공간 절약형 설계
- 당사의 열교환기 및 분리기 기술을 포함한 완벽한 솔루션
The benefits of the Alfa Laval U-turn
- Designed for natural refrigerants
- Complete solution including our plate heat exchanger and separator technology
- Minimum pressure drop losses
- Maximum energy efficiency
- Close temperature approach
- Space saving design
- Available for semi-welded-plate-heat-exchangers and Alfa Nova fusion bonded plate heat exchangers
Discover the future of green IT with Alfa Laval
Alfa Laval has supplied solutions for cooling server rooms since the earliest days of the internet. Today, we offer a wide range of solutions for data center cooling, all backed by a worldwide service network with experts who understand your business. By partnering with us as you begin planning your data center project, we can help you design a system that ensures you get maximum cooling efficiency and reliability.
성능 검사
알파라발 전문가는 장비의 성능을 검토하고 분석합니다. 모든 유지 보수를 예측하여 시스템 가동 시간 최적화 계획을 세울 수 있도록 최신 도구를 사용해 오염이나 기타 위험을 감지할 수 있습니다.
현장 세정
오염이 발생하면 알파라발 CIP(현장 세정) 시스템을 통해 장비를 분해하지 않고도 열교환기를 빠르고 쉽게 인라인 세척할 수 있습니다. 알파라발은 환경친화적이며 쉽게 생분해 가능한 세척제를 항상 사용합니다. CIP를 시행하면 장비를 반복적으로 불필요하게 개방할 필요가 없습니다. 따라서 예비 부품 소비와 유지 보수에 투입되는 인시(man-hour)가 크게 줄어듭니다.
역류 세척 장비
알파라발은 짧은 시간 동안 빈번하게 유입되는 냉각수 흐름에 대해서는 역류 세척 시퀀스를 권장합니다. 이 시퀀스에서는 물이 역류하면서 판형 열교환기 표면에 축적된 이물질을 긁어내고 세척합니다. 역류 세척 장비를 사용하면 시간과 비용을 절약하고 가동 중지 시간을 최소화할 수 있습니다.
Ready to learn more?
Want to find out how we can boost the cost efficiency and sustainability of your data center with smart cooling tower solutions based on leading plate heat exchanger technologies? Contact us today, and our experts will be in touch!