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Performance Evaluation of a Small Scale Modular Solar Trigeneration System

机译:小型模块化太阳能三联产系统的性能评估

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In order to improve the efficiency of solar thermal power (STP) system, a novel modular system combining cooling, heating, and power generation (CCHP) is proposed and introduced in this work. This modular CCHP system can simultaneously provide 10 kW electricity, −15~5°C coolant, and 60°C hot water to meet the requirements of cooling, heating, and electricity in a general family or other fields. The flow chart and working process of the modular system are introduced, based on which the energy and exergy efficiencies at the CCHP and STP operation modes are primarily evaluated and discussed. The results show that when the output electricity is constant, the overall efficiencies of energy and exergy of the system operating at the CCHP mode are 9.37 times and 2.62 times as big as those of the system operating at the STP mode, respectively. Thus, the modular solar thermal CCHP system can improve the energy and exergy efficiencies. Furthermore, calculation shows that both the overall energy and exergy efficiencies decrease with increase of inlet vapor temperature at given inlet vapor pressure, but both the efficiencies increase with increase of inlet vapor pressure at given inlet temperature.
机译:为了提高太阳能热发电(STP)系统的效率,在这项工作中提出并介绍了一种将制冷,供热和发电(CCHP)相结合的新型模块化系统。该模块化CCHP系统可同时提供10 kW的电力,−15〜5°C的冷却液和60°C的热水,以满足一般家庭或其他领域的冷却,加热和用电需求。介绍了模块化系统的流程图和工作过程,在此基础上,对CCHP和STP运行模式下的能量和火用效率进行了初步评估和讨论。结果表明,当输出电力恒定时,以CCHP模式运行的系统的总能量效率和火用效率分别是以STP模式运行的系统的9.37倍和2.62倍。因此,模块化的太阳能热CCHP系统可以提高能源效率和火用效率。此外,计算表明,在给定进口蒸汽压力下,总能量和火用效率均随进口蒸汽温度的升高而降低,但在给定进口温度下,效率均随进口蒸汽压力的升高而升高。

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