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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance evaluation of an open thermochemical energy storage system integrated with flat plate solar collector
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Performance evaluation of an open thermochemical energy storage system integrated with flat plate solar collector

机译:平板太阳能收集器集成的开放热化学储能系统性能评价

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In this study, the performance of an open thermochemical energy storage (TCES) system integrated with a flat plate solar collector is evaluated using a simplified dynamic model for space heating applications, considering a charging phase during the summer daytime and a discharging phase during the winter night. For charging and discharging operations, the time-varying solar flux (DNI) and ambient conditions in Pune, India is used. Simplified energy balance equations for the reactive packed bed and the flat plate solar collector are developed and validated against the previous reported works. The effects of the energy density and the aspect ratio of the reactive packed bed on the performance of the TCES system are evaluated using a non-dimensional parameter sigma, which is the ratio of thermal power extracted/stored to the power required to blow air through the reactive packed bed. An increase in reactive packed bed energy density by 16.66% is found to decrease the time-averaged value of sigma by 63.97% and 48.06%, respectively, for charging and discharging phases. A four-fold increase of aspect ratio of the reactive packed bed is found to increase the time-averaged value of sigma by 6.20 times and 6.35 times during the charging and discharging phases, respectively.
机译:在这项研究中,使用简化的空间加热应用程序进行了与平板太阳能电池集成的开放热化学能量存储器(TCES)系统的性能,用于夏季白天的充电阶段和冬季放电相位夜晚。用于充电和放电操作,使用浦那的时变太阳能(DNI)和环境条件。对反应性包装床和平板太阳能收集器的简化能量平衡方程进行了开发和验证了先前的报告的作品。使用非维参数Sigma评估活性填充床的能量密度和纵横比对TCS系统的性能的影响,这是提取/存储到吹气所需的电力的热功率比率反应性包装床。反应性包装床能量密度的增加将分别将Sigma的时间平均值降低63.97%和48.06%,用于充电和排出阶段。发现反应性包装床的纵横比增加了纵横比的纵横比,分别在充电和放电期间将Sigma的时间平均值增加了6.20倍和6.35倍。

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