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首页> 外文期刊>ASHRAE Transactions >Characteristics of Air-Cooled Package Air Conditioners with Refrigeration Pump for Data Centers
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Characteristics of Air-Cooled Package Air Conditioners with Refrigeration Pump for Data Centers

机译:数据中心用制冷泵的风冷式成套空调的特性

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摘要

In recent years, the amount of energy consumed by data centers has tended to increase. Therefore, power savings are strongly suggested. Data centers must be cooled year-round due to the extremely large amount of heat emitted from the IT devices. Therefore, to decrease year-round energy consumption, it is important to use low-temperature outdoor air during cool seasons such as mid-to-late fall and early spring and cold seasons like winter. Thus, we investigated cooling systems that use low-temperature outdoor air, and we developed a package air conditioner (A/C) that has cooling functions that use outdoor air. The new A/C combines a compression cycle and a cycle that stops the compressor and circulates coolant with a pump; it operates by switching to a compression cycle when the outdoor temperature is high and switching to a pump cycle when the outdoor temperature is low. Specifically, the pump cycle is the system of taking the low-temperature outdoor air into a coolant cycle from the heat exchanger in the outdoor unit (indirect outdoor-air cooling method) and transporting cold energy into the room with a pump. The A/C reduces the energy consumption in low outdoor temperatures by operating in favor of the efficient pump cycle. In this report, in order to verify the characteristics of the A/C, we built a simulation mathematical model. In addition, we verified the validity of the mathematical model compared to the measured value of the prototype. We show the effects of refrigerant circulation and outdoor-air temperature as an example of the verification simulation using a mathematical model. We calculated the annual energy consumption of the package A/Cs with refrigeration pumps based on the outdoor-air temperature data and the operating efficiency of the outdoor-air temperature. Specifically, the A/C that we developed reduced energy consumption by 50% in New York and 53% in Chicago, compared to the energy consumption of conventional computer-room A/Cs.
机译:近年来,数据中心消耗的能源数量趋于增加。因此,强烈建议节电。由于IT设备散发的大量热量,必须对数据中心进行全年冷却。因此,为了减少全年的能源消耗,重要的是在凉爽的季节(例如中秋至秋季和早春)以及寒冷的季节(例如冬天)期间使用低温室外空气。因此,我们研究了使用低温室外空气的冷却系统,并开发了具有使用室外空气的冷却功能的一体式空调(A / C)。新的空调将压缩循环和使压缩机停止运转并通过泵使冷却剂循环的循环结合在一起。当室外温度高时,通过切换到压缩循环,而室外温度低时,则切换到泵循环进行操作。具体而言,泵循环是将低温的室外空气从室外机中的热交换器带入制冷剂循环(间接室外空气冷却方式),并通过泵将冷能输送到室内的系统。 A / C通过有利于高效的泵循环来降低室外低温下的能耗。在本报告中,为了验证空调的特性,我们建立了一个仿真数学模型。此外,与原型的测量值相比,我们验证了数学模型的有效性。我们以使用数学模型的验证模拟为例,展示了制冷剂循环和室外空气温度的影响。我们根据室外空气温度数据和室外空气温度的运行效率,计算了带制冷泵的空调成套空调的年能耗。具体而言,与传统机房A / C的能耗相比,我们开发的A / C将纽约的能耗降低了50%,将芝加哥的能耗降低了53%。

著录项

  • 来源
    《ASHRAE Transactions》 |2015年第1期|430-439|共10页
  • 作者单位

    Research and Development Headquarters of NTT Facilities, Inc., Tokyo, Japan;

    Research and Development Headquarters of NTT Facilities, Inc., Tokyo, Japan;

    Research and Development Headquarters of NTT Facilities, Inc., Tokyo, Japan;

    Research and Development Headquarters of NTT Facilities, Inc., Tokyo, Japan;

    Waseda University, Tokyo, Japan;

    Waseda University, Tokyo, Japan;

    Air Conditioning Design Department of Hitachi Appliances, Inc., Shizuoka, Japan;

    Research and Development Headquarters of NTT Facilities, Inc., Tokyo, Japan;

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