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Optimal design of an absorption chilled water storage air conditioning system driven by waste heat

机译:废热驱动的吸收冷却储水空调系统的最佳设计

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In order to meet both economic and energy requirements, this study has proposed an optimal design to minimize the sum of the initial and operation energy costs for a 1200 refrigeration ton chiller and 12 water storage tanks in an absorption chilled water storage air conditioning system. Various power consumption calculation methods for the main devices are included to predict the performance of this equipment under different operating conditions. In addition, the performance curves of the water storage tank under the storage and discharge modes are calculated using Fluent software. The article uses five control strategies for a cooling tower along with three hot water inlet temperatures of a generator to simulate the optimal design of a system. The results show that the least power (10,336kWh) is consumed when the cooling tower's outlet temperature is 32 degrees C and the generator's inlet hot water temperature is 105 degrees C.
机译:为了满足经济和能源要求,本研究提出了最佳设计,以最大限度地减少1200制冷吨冷却器和12个吸收冷却储水空调系统中的1200个储水箱的初始和运营能源成本的总和。 包括用于主设备的各种功耗计算方法,以在不同的操作条件下预测该设备的性能。 此外,使用流畅的软件计算存储和放电模式下的储水室的性能曲线。 本文使用了冷却塔的五种控制策略以及发电机的三个热水入口温度,以模拟系统的最佳设计。 结果表明,当冷却塔的出口温度为32℃时消耗最少的功率(10,336kWh),并且发电机的入口热水温度为105℃。

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