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Determination of the optimal discharge pressure of the transcritical CO2 heat pump cycles for heating and cooling performances based on new correlation

机译:基于新相关性的加热和冷却性能的测定确定跨临界CO2热泵循环的最佳排放压力

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Considering the expansion of heat pump systems as one of the environment-friendly cycles, increasing these cycles' efficiency is significant. This paper is a comprehensive study of transcritical CO2 heat pump cycles in heating and cooling modes covering a range of ambient temperatures from -15 to 30 degrees C along with the range of 25 to 45 degrees C in cases of gas-cooler exit temperatures. In this study, the ambient temperature of 0 degrees C and gas-cooler exit temperatures of 30 and 35 degrees C were examined, and the best Coefficient of Performance and exergy efficiency were obtained at a discharge pressure of 7496 and 8896 kPa, respectively. The ambient temperature of 30 degrees C and gas-cooler exit temperatures of 45 and 50 degrees C were investigated, and the discharge pressure of 10,938 and 12,363 kPa have the highest Coefficient of Performance and exergy efficiency, respectively. The results show that the gas-cooler temperature positively affects the optimum discharge pressure. In conclusion, an equation for Optimum Discharge Pressure is presented as a general correlation to obtain this parameter for the heating and cooling modes in these commonly used cycles. This equation also presented with a deviation less than 5.66% of the optimum discharge pressure obtained from energy and exergy analysis. Therefore, it has been identified as an acceptable criterion in these cycles. Furthermore, by examining the amount of exergy destruction of these cycles' most essential components, it becomes clear that they are the most exergy destruction related to the compressor.
机译:考虑到热泵系统作为环境友好循环之一的扩展,提高这些循环的效率具有重要意义。本文全面研究了在加热和冷却模式下的跨临界CO2热泵循环,包括在-15到30摄氏度的环境温度范围内,以及在气体冷却器出口温度为25到45摄氏度的情况下。在这项研究中,检查了0℃的环境温度和30℃和35℃的气体冷却器出口温度,并分别在7496和8896 kPa的排放压力下获得了最佳性能系数和火用效率。研究了30℃的环境温度和45℃和50℃的气体冷却器出口温度,10938和12363 kPa的排放压力分别具有最高的性能系数和(火用)效率。结果表明,气体冷却器温度对最佳排气压力有积极影响。综上所述,提出了一个最佳排放压力方程,作为获得这些常用循环中加热和冷却模式参数的一般关联式。该方程的偏差小于能量和火用分析得出的最佳排放压力的5.66%。因此,它已被确定为这些循环中可接受的标准。此外,通过检查这些循环最重要部件的火用破坏量,可以清楚地看出,它们是与压缩机相关的火用破坏最严重的部件。

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