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Field Evaluation for Air-source Transcritical CO_2 Heat Pump Water Heater with Optimal Pressure Control

机译:具有最佳压力控制的空气源跨临界CO_2热泵热水器的现场评估

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Several optimal discharge pressure correlations for transcritical CO_2 heat pump in literature have been discussed in this paper. Most of them are related to the ambient temperature, the evaporation temperature and the gas cooler outlet temperature. A revised optimal discharge pressure model as the function of ambient temperature and water outlet temperature is developed based on earlier experimental results. To validate the model developed and control effect in practical applications, field tests are conducted to evaluate the performance of an air-source transcritical CO_2 heat pump water heater in practical application. The results show that the coefficient of performance (COP) can achieve 3.76 in the nominal test condition with 15°C water inlet temperature and 80°C hot water supply temperature. Even when the hot water temperature is higher than 90°C, the COP remains at 3.21 with 20°C dry-bulb temperature and 15°C wet-bulb temperature. Under -15°C low ambient air temperature condition, the COP was 2.19 with the hot-water supply temperature of 60°C. Comparison between the field test results and the model predictions show that the maximum relative error of discharge pressure control was 3.2% in the high temperature of water outlet condition. The overall ATHP system performance based on the revised model and PLC control strategy can meet the requirements in practical applications.
机译:本文讨论了文献中的跨临界CO_2热泵的几种最佳排出压力相关性。其中大多数与环境温度,蒸发温度和气体冷却器出口温度有关。根据早期的实验结果开发了作为环境温度和水出口温度的函数的修订后的最佳排放压力模型。为了验证在实际应用中开发和控制效果的模型,进行了现场测试,以评估在实际应用中的空气源跨临界CO_2热泵热泵的性能。结果表明,性能系数(COP)可以在标称试验条件下实现3.76,具有15°C进水口温度和80°C热水供应温度。即使当热水温度高于90℃时,COP也保持在3.21,20°C干泡温度和15°C湿泡温度。在-15°C低环境空气温度条件下,COP为2.19,热水供应温度为60°C。场测试结果与模型预测之间的比较表明,在水出口的高温下放电压力控制的最大相对误差为3.2%。基于修订模型和PLC控制策略的整体ATHP系统性能可以满足实际应用中的要求。

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