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Thermo-Economic Optimization of an Idealized Solar Tower Power Plant Combined with MED System

机译:与MED系统相结合的理想化太阳能塔电厂的热经济优化

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摘要

Based on the reversible heat engine model, theoretical analysis is carried out for economic performance of a solar tower power plant (STPP) combined with multi-effect desalination (MED). Taking total revenue of the output power and the fresh water yield per unit investment cost as the economic objective function, the most economical working condition of the system is given by analyzing the influence of the system investment composition, the receiver operating temperature, the concentration ratio, the efficiency of the endoreversible heat engine, and the relative water price on the economic parameters of the system. The variation curves of the economic objective function are given out when the main parameter is changed. The results show that the ratio of water price to electricity price, or relative price index, has a significant impact on system economy. When the water price is relatively low, with the effect numbers of the desalination system increasing, and the economic efficiency of the overall system worsens. Only when the price of fresh water rises to a certain value does it make sense to increase the effect. Additionally, the threshold of the fresh water price to the electricity price ratio is 0.22. Under the conditions of the current price index and the heliostat (or reflector), the cost ratio and the system economy can be maximized by selecting the optimum receiver temperature, the endoreversible heat engine efficiency, and the optimum concentration ratio. Given the receiver surface temperature and the endoreversible heat engine efficiency, increasing the system concentration ratio of the heliostat will be in favor of the system economy.
机译:基于可逆热力发动机模型,对太阳能塔电厂(STPP)的经济性能进行了理论分析,结合多效脱盐(MED)。以经济目标函数为经济目标函数的总收入和每单位投资成本的淡水产量,通过分析系统投资组成,接收机工作温度,浓度比的影响,给出了系统的最经济工作条件,内心热发动机的效率,以及系统经济参数的相对水价。当主参数改变时,会发出经济目标函数的变化曲线。结果表明,水价与电价的比率或相对价格指数对系统经济产生重大影响。当水价相对较低时,随着脱盐系统的效果数量增加,整体系统的经济效率恶化。只有在淡水的价格上升到一定的价值时,增加效果是有意义的。另外,淡水价格与电价比的阈值为0.22。在当前价格指数和光晕(或反射器)的条件下,通过选择最佳接收器温度,内料热发动机效率和最佳浓度比来最大化成本比和系统经济。鉴于接收器表面温度和内心热发动机效率,增加了Heliostat的系统浓度比将有利于系统经济。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2018(20),11
  • 年度 2018
  • 页码 822
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:热经济优化;太阳能塔电厂;内心发动机;两用电厂;

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