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The effect of heat loss on the performance of a solar-driven heat engine

机译:热量损失对太阳能驱动热机性能的影响

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摘要

An optimal performance analysis of a parabolic-trough direct-steam-generation solar-driven Rankine cycle power plant at maximum power (MP) and under maximum power density (MPD) conditions is performed numerically to investigate the effects of heat loss from the heat source and working fluid. In this study, the ideal Rankine cycle of the solar-driven power plant is modified into an equivalent Carnot-like cycle with a finite-rate heat transfer. The main assumptions of this study include that: (a) the parabolic collector is the thermal reservoir at a high temperature, (b) the heat transfer process between the collector and the working fluid is through either radiation and convection simultaneously or radiation only, and (c) the heat transfer process from the working fluid to the low-temperature thermal reservoir is convection dominated. Comprehensive discussions on the effect of heat loss during the heat transfer process from the hot thermal reservoir to the working fluid in the parabolic-trough solar collector are provided. The major results of this study can be summarized as follows: (a) the working fluid temperature at the hot-side heat exchanger decreases remarkably whereas the working fluid temperature at the cold-side heat exchanger does not show any significant change with increasing heat loss, (b) the MP, MPD, and thermal efficiencies decrease with increasing heat loss, and (c) the effect of heat loss on the decrease of thermal efficiency increases when convection is the dominant heat transfer mode at the hot-side heat exchanger. [PUBLICATION ABSTRACT]
机译:以数值方式对抛物槽式直接蒸汽发电太阳能朗肯循环发电厂在最大功率(MP)和最大功率密度(MPD)条件下进行了最佳性能分析,以研究热源热损失的影响和工作液。在这项研究中,将太阳能发电厂的理想兰金循环修改为具有有限速率传热的等效卡诺式循环。这项研究的主要假设包括:(a)抛物线状集热器是高温下的蓄热器;(b)集热器与工作流体之间的传热过程是同时通过辐射和对流进行的,或仅通过辐射进行的;以及(c)从工作流体到低温储热器的热传递过程是对流为主的。提供了有关从热蓄热器到抛物槽太阳能收集器中工作流体的热传递过程中的热损失影响的综合讨论。这项研究的主要结果可以概括如下:(a)热侧热交换器的工作流体温度显着下降,而冷侧热交换器的工作流体温度没有显示出随着热量损失的增加而发生的显着变化。 ,(b)MP,MPD和热效率随着热损失的增加而降低,并且(c)当对流是热侧热交换器的主要传热模式时,热损失对热效率降低的影响会增加。 [出版物摘要]

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