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Investigation of the performance of modified organic Rankine cycles (ORCs) and modified trilateral flash cycles (TFCs) assisted by a solar pond

机译:太阳能池辅助的有机朗肯循环(ORC)和三边形闪蒸循环(TFC)的性能研究

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摘要

Solar pond is a type of solar collector that stores solar energy in the form of heat. The solar pond can be used as a low-temperature heat source for electricity generation. In this paper, to find the most suitable power cycle for power generation from the solar pond, the performance of the Organic Rankine Cycle (ORC), Trilateral Flash Cycle (TFC) and their modified forms with an open feed liquid heater and an internal heat exchanger for different working fluids was investigated. Water was considered as the heat transfer fluid which transfers the stored heat from the solar pond to the working fluid of the cycle. The results indicate that in all cases, the energy and exergy efficiency of the ORC is higher than those of the TFC. The regenerative ORC with both open feed liquid heater and internal heat exchanger that works with R123, as the working fluid, has the best performance and the highest output power among all the examined cycles. By reducing the mass flow rate of the heat removal working fluid, energy and exergy efficiency of the cycle increased. The optimum mass flow rate in which the maximum power is generated is 0.1082 kg/s and 0.1224 kg/s for the ORCs and the TFCs that work with R123, respectively.
机译:太阳能池是一种以热能形式储存太阳能的太阳能收集器。该太阳能池可用作发电的低温热源。在本文中,为了找到最合适的太阳能池发电周期,有机朗肯循环(ORC),三边闪蒸周期(TFC)的性能及其在开放式进料液体加热器和内部热量作用下的改进形式研究了用于不同工作流体的交换器。水被认为是传热流体,它将储存的热量从太阳能池传递到循环的工作流体。结果表明,在所有情况下,ORC的能量和火用效率均高于TFC。在所有检查循环中,带有开放式进料液体加热器和内部热交换器(与R123作为工作流体)一起使用的再生ORC具有最佳性能和最高输出功率。通过降低排热工作流体的质量流速,可以提高循环的能量和火用效率。对于使用R123的ORC和TFC,产生最大功率的最佳质量流量分别为0.1082 kg / s和0.1224 kg / s。

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