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Operating characteristics of all-year cooling system integrated with rotary booster and compressor

机译:与旋转助力器和压缩机集成的全年冷却系统的操作特性

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摘要

An all-year cooling system integrated with a rotary booster and a compressor was developed to reduce the energy consumption of data-com center, and the experimental setup for the prototype was established. The prototype of the integrated cooling system, which was running with the compressor in the throttling (CT) mode and the rotary booster in the throttling (BT) or non-throttled (BN) mode, was experimented comprehensively. Results show that when the difference between indoor and outdoor temperatures (Delta t) is 25 degrees C, the maximum Q and energy efficiency ratio (EER) of the system running in BT mode are 18.58 kW and 14.66, respectively. The EER of the system running in BT mode becomes smaller than that of the system in BN mode when Delta t is 15 degrees C. To meet the cooling requirements, the switching parameter from CT to BT mode of the system should be set to Delta t = -2 degrees C, whereas it should be set to Delta t = 25 degrees C when the BT mode is switched to BN mode. However, the switching parameter from BT to CT or BN mode should be set to Delta t = 0 degrees C or 15 degrees C, respectively, to increase the EER.
机译:开发了一系列与旋转助力器和压缩机集成的全年冷却系统,以降低数据集中的能耗,并建立了原型的实验设置。在节流(CT)模式中与压缩机一起运行的集成冷却系统的原型和节流(BT)或非节流(BN)模式的旋转助力器,进行了全面地进行实验。结果表明,当室内和室外温度(ΔT)之间的差异为25摄氏度时,BT模式运行的系统的最大Q和能效比(eer)分别为18.58千瓦和14.66。当ΔT为15摄氏度时,在BT模式下运行的系统的eer变得小于系统中的系统中的系统。为了满足冷却要求,系统的CT到BT模式的开关参数应设置为Delta T. = -2°C,而当BT模式切换到BN模式时,应将其设置为Delta T = 25摄氏度。然而,来自BT到CT或BN模式的切换参数分别将分别设置为ΔT= 0度C或15摄氏度以增加eer。

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