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A new trigeneration system for power, cooling, and freshwater production driven by a flash-binary geothermal heat source

机译:由闪光二进制地热热源驱动的电力,冷却和淡水生产的新型三通系统

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Among different types of geothermal processing used in the energy conversion systems, flash-binary geothermal can be the best scenario for high-temperature geothermal sources. Reviewing the available literature it can be found that the flash-binary geothermal power plants have a great potential to be extended to trigeneration systems, nonetheless they have received less attention. In this regard, a new trigeneration system for freshwater, power, and cooling production is devised using a flash-binary geothermal heat source at 170 degrees C. In this devised trigeneration system, a humidification-dehumidification (HDH) unit is used as a binary cycle. Another merit of the devised trigeneration system is provision of two different cooling temperatures for sub- and above-zero applications via using two ejector refrigeration cycles (ERCs). The feasibility of the reckoned trigeneration system is investigated from 1st and 2nd laws of thermodynamics viewpoint. Later, genetic algorithm (GA) method is used to optimize performance of the devised system by defining different optimum modes. It is found that optimization leads to the increment of the steam turbine output power, overall cooling load, trigeneration-based gain-output-ratio (TGOR) and exergy efficiency of around 77.08%, 87.01%, 8.18%, and 4636%, respectively. The overall exergy destruction of the devised trigeneration system at the base mode is calculated 946.7 kW which is decreased to 882.3 kW at the optimum mode. Among all elements, recovery heat exchanger is recognized as the highly destructive element in the base mode by exergy destruction of 308.5 kW which is decreased to 194.7 kW at this optimum mode. At last, an intensive parametric evaluation of some influential parameters is presented. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在能量转换系统中使用的不同类型的地热处理中,闪光二进制地热可以是高温地热源的最佳场景。审查可用文献可以发现,闪光二进制地热发电厂具有巨大的潜力,延长到Treglemence Systems,仍然受到不太关注。在这方面,使用闪光二进制地热热源在170摄氏度下设计了一种新的淡水,功率和冷却​​产生的新的初步系统。在这种设计的三级地区系统中,加湿除湿系统(HDH)单位用作二进制文件循环。设计设计的Trigemeration系统的另一个优点是通过使用两个喷射器制冷循环(ERC)来提供用于零级和高于零应用的两种不同的冷却温度。从热力学观点的第1和第2规则研究了估计的三合一组织系统的可行性。后来,遗传算法(GA)方法用于通过定义不同的最佳模式来优化设计系统的性能。结果发现,优化导致蒸汽轮机输出功率,总冷却负荷,基于三合一的增益 - 率(Tgor)的增量,并且高出效率约为77.08%,87.01%,8.18%和4636% 。在基础模式下,设计的设计系统的整体漏洞破坏是计算的946.7千瓦,以最佳模式降至882.3千瓦。在所有元件中,恢复热交换器被308.5 kW的电气破坏被识别为基础模式中的高度破坏元件,这在该最佳模式下降低至194.7kW。最后,提出了对某些有影响性参数的强化参数评估。 (c)2019 Elsevier Ltd.保留所有权利。

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