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Effect of climatic conditions on energy consumption in direct fresh-air container data centers

机译:气候条件对直接新鲜空气集装箱数据中心能耗的影响

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To examine the use of fresh-air cooling to reduce energy consumption in container data centers (CDCs) regardless of location, a prototype fresh-air-cooled CDC was constructed in a Tokyo suburb, and a year-long operating test was conducted. Fresh-air cooling of information technology (IT) equipment does not require energy for air conditioning, and can be operated at reduced cost and energy usage. However, the characteristics of fresh-air change throughout the year, which would make it difficult to maintain inside temperature and humidity of a server room at the set points. Also, some geographic locations may be unsuitable for CDCs cooled directly by fresh-air. In addition to fresh-air cooling, CDCs at these locations have been equipped with supplemental air-conditioning units such as air conditioners to control the internal temperature and humidity. To reduce energy usage, it is desirable to use energy conservation methods such as evaporative cooling and waste heat from IT equipment as supplemental air-conditioning because they can be more feasible in compact facilities than conventional air conditioners. Although data centers (DCs) that supplement fresh-air cooling with these air-conditioning methods are currently in operation, it is not clear whether these methods can be applied in any location regardless of the climatic conditions. Depending on the application, in particular, it is necessary to set up CDCs in urban suburbs, because large access latency for users may be required. To examine these issues, a fresh-air-cooled CDC was set up and evaluated for one year in a Tokyo suburb, under different climate conditions of existing fresh-air-cooled DCs. The results confirmed that evaporative cooling and the use of waste heat from IT equipment were sufficient to support direct fresh-air cooling even when the characteristics of fresh-air were outside the range of acceptable server settings. Moreover, this CDC realized an annual energy savings of 20.8% compared with the- centers that use conventional air conditioning. Furthermore, the power usage effectiveness of this CDC was found to be 1.058 from the energy usage and was compared with that of existing direct fresh-air-cooled DCs which is located in the urban suburbs. The CDC near Tokyo exhibited similar energy savings to other DCs.
机译:为了研究使用新风冷却以减少容器数据中心(CDC)的能源消耗,而不论其位置如何,在东京郊区构造了一个新风冷却CDC原型,并进行了为期一年的运行测试。信息技术(IT)设备的新风冷却不需要用于空调的能源,因此可以降低成本和能耗。然而,新鲜空气的特性一年四季都在变化,这将使得很难将服务器机房的内部温度和湿度保持在设定点。同样,某些地理位置可能不适合直接由新鲜空气冷却的CDC。除了新鲜空气冷却外,这些位置的CDC还配备了辅助空调装置,例如空调器,以控制内部温度和湿度。为了减少能源使用,希望使用节能方法,例如蒸发冷却和来自IT设备的废热作为辅助空调,因为它们在紧凑型设备中比常规空调更可行。尽管目前正在运行使用这些空调方法补充新鲜空气冷却的数据中心(DC),但尚不清楚这些气候方法是否可以在任何位置应用,而与气候条件无关。特别是根据应用程序,有必要在郊区建立CDC,因为可能需要较大的用户访问延迟。为了研究这些问题,在东京郊区建立了一个新风冷的疾病预防控制中心,并对其进行了为期一年的评估,其条件是现有的新风冷DC的气候条件不同。结果证实,即使新鲜空气的特性不在可接受的服务器设置范围内,蒸发冷却和IT设备产生的废热也足以支持直接新鲜空气冷却。此外,与使用传统空调的中心相比,该CDC每年可节省20.8%的能源。此外,该CDC的电力使用效率从能源使用中得出为1.058,并将其与位于城市郊区的现有直接新鲜空气冷却的DC进行了比较。东京附近的疾病预防控制中心显示出与其他DC相似的节能效果。

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