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Study on the Optimizing Operation of Exhaust Air Heat Recovery and Solar Energy Combined Thermal Compensation System for Ground-Coupled Heat Pump

机译:地面耦合热泵排气热回收和太阳能组合热补偿系统的优化操作研究

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This study proposed an exhaust air heat recovery and solar energy combined thermal compensation system (ESTC) for groundcoupled heat pumps. Based on the prediction of the next day's exhaust air temperature and solar irradiance, an optimized thermal compensation (OTC) method was developed in this study as well, in which the exhaust air heat recovery compensator and solar energy compensator in the ESTC system run at high efficiency throughout various times of day. Moreover, a modified solar term similar days group (STSDG) method was proposed to improve the accuracy of solar irradiance prediction in hazy weather. This modified STSDG method was based on air quality forecast and AQI (air quality index) correction factors. Through analyzing the operating parameters and the simulation results of a case study, the ESTC system proved to have good performance and high efficiency in eliminating the heat imbalance by using the OTC method. The thermal compensation quantity per unit energy consumption (TEC) of ESTC under the proposed method was 1.25 times as high as that under the traditional operation method. The modified STSDG method also exhibited high accuracy. For the accumulated solar irradiance of the four highest daily radiation hours, the monthly mean absolute percentage error (MAPE) between the predicted values and the measured values was 6.35%.
机译:该研究提出了一种用于地下耦合热泵的排气热回收和太阳能组合热补偿系统(ESTC)。基于第二天的排气温度和太阳能辐照度的预测,本研究开发了优化的热补偿(OTC)方法,其中eSTC系统中的排气热回收补偿器和太阳能补偿器在高处运行效率在整个一天的一天。此外,提出了一种改进的太阳能术语类似天组(STSDG)方法,以提高朦胧天气中太阳辐照度预测的准确性。这种改进的STSDG方法基于空气质量预测和AQI(空气质量指数)校正因子。通过分析案例研究的操作参数和仿真结果,通过使用OTC方法,助酯系统证明具有良好的性能和高效率。在所提出的方法下,eSTC的每单位能量消耗(TEC)的热补偿量为1.25倍,与传统运行方法一样高。修改的STSDG方法也表现出高精度。对于四个最高每日辐射时间的累积太阳辐照度,预测值与测量值之间的月均绝对百分比误差(MAPE)为6.35%。

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