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Configurations of solar air source absorption heat pump and comparisons with conventional solar heating

机译:太阳能空气源吸收热泵和传统太阳能加热的比较配置

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摘要

A solar air source absorption heat pump (ASAHP) is analyzed to explore the suitable configurations of advanced solar heating systems. A single-effect (SE) and a generator-absorber heat exchange (GAX) ASAHP, driven by a flat-plate collector (FPC), evacuated tube collector (ETC), compound parabolic concentrator (CPC) and parabolic -trough collector (PTC) are modeled. A parametric study and comparative analysis of different solar heating systems indicate that the CPC-SE, PTC-SE, and PTC-GAX are suitable configurations. Comparisons with the conventional direct solar heating (DSH) show that the ETC-DSH performs the best among all the DSH systems, only the PTC-SE and PTC-GAX are advantageous over it under a solar radiation of 800 W/m(2). At an ambient temperature of 7 C, the CPC-SE performs better than the ETC-DSH only when the solar radiation is above 1000 W/m(2). The PTC-GAX becomes worse than the PTC-SE if the solar radiation is below 650 W/m(2) and even becomes inferior to the ETC-DSH if the solar radiation is below 400 W/m(2). Besides, the applicability domain of the CPC-SE is very narrow, the efficiency improving rate (EIR) of the CPC-SE is about 15% under a favorable condition. The PTC-SE and PTC-GAX had a much wider applicability domain, and the maximum EIR value is about 24% and 36%, respectively. Reducing air pollution is very important for the applications of the solar ASAHP systems.
机译:分析了太阳能空气源吸收热泵(ASAHP)以探索高级太阳能加热系统的合适配置。由平板收集器(FPC),抽空管收集器(ETC),复合抛物线浓缩器(CPC)和抛物线 - 洗涤器收集器驱动的单一效果(SE)和发电机吸收剂热交换(GAX)ASAHP(PTC )被建模。不同太阳能加热系统的参数研究和比较分析表明CPC-SE,PTC-SE和PTC-GAX是合适的配置。与传统的直接太阳能加热(DSH)的比较表明,ETC-DSH在所有DSH系统中表现最佳,只有PTC-SE和PTC-GAX在800W / m的太阳辐射下有利地利用它(2) 。在7℃的环境温度下,CPC-SE仅在太阳辐射高于1000W / m(2)时更好地执行ETC-DSH。如果太阳辐射低于650W / m(2),则PTC-GAX变得比PTC-SE更差。如果太阳辐射低于400W / m(2),甚至变得差变为等等。此外,CPC-SE的适用性域非常窄,CPC-SE的效率提高率(EIR)在有利的情况下约为15%。 PTC-SE和PTC-GAX具有更广泛的适用域,最大EIR值分别为约24%和36%。降低空气污染对太阳能AAHP系统的应用非常重要。

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