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Study on power-saving effects in direct-use of geothermal energy for datacenter cooling systems

机译:地热能直接用于数据中心冷却系统的节能效果研究

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Over recent years, against a social background of rising energy costs and a desire to create a “low-carbon society,” the demand to reduce electricity consumption has been growing. As for data centers, cooling of IT equipment (like servers and communication devices) by using means like heat-pump systems consumes a large amount of energy. As a means of reducing the electrical power consumed by cooling data centers, utilizing natural energy is being recommended. An example of such a means is a method utilizing air-side economizer and geothermal energy. The authors have constructed and experimentally validated a system that utilizes naturally existing geothermal energy. In the case that an underground heat source is used as a cooling source, so-called “heat-pump systems” are often used. However, if the characteristics of underground temperature in Japan (namely, all-year-round stability and heat discharge from IT equipment of data centers being higher than the underground temperature) could be utilized, cooling by energy generated by the difference between underground temperature and temperature of IT-equipment-generated heat would be possible, and an underground heat source could be used as a cooling source without the need to use a heat pump. Up until now, few cases of directly using an underground heat source for cooling a data center - without using a heat pump - have been reported. Given those circumstances, the authors have constructed a “geothermal air-conditioning system” at an actual data center and determined its performance. In this study, verifying the cooling effect of the geothermal air-conditioning system on that data center and revealing the effect of transport power and IT-equipment-generated heat density on the efficiency of the system were set as goals. In the case that the IT equipment in the data center generates 63 kW of heat, a geothermal cooling capacity of 27.4 kW is obtained, and “seasonal coefficient of performance” (sCOP) of the geothermal air-conditioning system is 5.1. Compared to a high-efficiency air conditioner we developed [1], the developed geothermal air-conditioning system reduces electrical power consumption by 21%. Utilizing natural energy for cooling data centers in this manner will significantly contribute to saving energy used for air conditioning.
机译:近年来,在能源成本不断上涨的社会背景下,并渴望创建“低碳社会”,减少电力消耗的需求一直在增长。对于数据中心,通过使用热泵系统等方式冷却IT设备(例如服务器和通信设备)会消耗大量能量。作为减少冷却数据中心消耗的电能的一种方法,建议利用自然能。这种手段的一个例子是利用空气侧节能器和地热能的方法。作者已经构建并通过实验验证了利用自然存在的地热能的系统。在地下热源用作冷却源的情况下,通常使用所谓的“热泵系统”。但是,如果可以利用日本地下温度的特征(即全年稳定性和数据中心IT设备的散热高于地下温度),则可以利用地下温度与温度之间的差异产生的能量进行冷却。 IT设备产生的热的温度是可能的,并且地下热源可以用作冷却源,而无需使用热泵。迄今为止,很少有直接使用地下热源冷却数据中心而不使用热泵的案例。在这种情况下,作者在实际的数据中心构建了一个“地热空调系统”,并确定了其性能。在这项研究中,以验证地热空调系统对数据中心的冷却效果并揭示运输功率和IT设备产生的热密度对系统效率的影响为目标。如果数据中心的IT设备产生63 kW的热量,则可获得27.4 kW的地热冷却能力,地热空调系统的“季节性性能系数”(sCOP)为5.1。与我们开发的高效空调相比[1],开发的地热空调系统可将电力消耗降低21%。以这种方式将自然能用于冷却数据中心将大大有助于节省用于空调的能量。

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