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首页> 外文期刊>Journal of Cleaner Production >Optimization of concentrating solar thermal power plant based on parabolic trough collector
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Optimization of concentrating solar thermal power plant based on parabolic trough collector

机译:基于抛物线槽式集热器的聚光太阳能热电厂优化

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摘要

Concentrating solar power (CSP) plant with parabolic trough collector (PTC) using synthetic or organic oil based heat transfer fluid is the most established and commercially attractive technology. In this paper, extensive energy and economic analysis of PTC based CSP plants, without storage, are reported. Effects of turbine inlet pressure, turbine inlet temperature, design radiation, plant size, and various modifications of Rankine cycle on overall efficiency as well as levelized cost of energy are studied. Furthermore, the variation in optimal turbine inlet pressure with turbine inlet temperature, design radiation, plant size, and various modifications of Rankine cycle are also analyzed. Energy and cost optimal turbine inlet pressures for 1 MWe plant (with basic Rankine cycle) are about 4.5-7.5 MPa and 3.5-7.5 MPa, respectively. The optimum pressure is observed to be a weak function of design solar radiation. The overall efficiency increases and levelized cost of energy decreases with increase in turbine inlet temperature, plant size and various modifications of the Rankine cycle.
机译:使用合成或有机油基传热流体的抛物槽式集热器(PTC)来集中太阳能(CSP)的工厂是最成熟且最具商业吸引力的技术。在本文中,对没有存储的基于PTC的CSP工厂进行了广泛的能源和经济分析。研究了涡轮机入口压力,涡轮机入口温度,设计辐射,设备尺寸以及兰金循环的各种修改对总体效率以及能源成本的影响。此外,还分析了最佳涡轮机入口压力随涡轮机入口温度,设计辐射,设备尺寸以及兰金循环的各种变化而变化。 1 MWe工厂(具有基本兰金循环)的能源和成本最佳涡轮进口压力分别约为4.5-7.5 MPa和3.5-7.5 MPa。观察到最佳压力是设计太阳辐射的弱函数。随着涡轮机入口温度,工厂规模的增加以及兰金循环的各种修改,整体效率提高,能源的平均成本降低。

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