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Performance analysis of an Integrated Solar Combined Cycle using Direct Steam Generation in parabolic trough collectors

机译:抛物槽式集热器中直接产生蒸汽的集成太阳能联合循环的性能分析

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摘要

The contribution of solar thermal power to improve the performance of gas-fired combined cycles in very hot and dry environmental conditions is analyzed in this work, in order to assess the potential of this technique, and to feature Direct Steam Generation (DSG) as a well suited candidate for achieving very good results in this quest. The particular Integrated Solar Combined Cycle (ISCC) power plant proposed consists of a DSG parabolic trough field coupled to the bottoming steam cycle of a Combined Cycle Gas Turbine (CCGT) power plant. For this analysis, the solar thermal power plant performs in a solar dispatching mode: the gas turbine always operates at full load, only depending on ambient conditions, whereas the steam turbine is somewhat boosted to accommodate the thermal hybridization from the solar field. Although the analysis is aimed to studying such complementary effects in the widest perspective, two relevant examples are given, corresponding to two well-known sites: Almeria (Spain), with a mediterranean climate, and Las Vegas (USA), with a hot and dry climate. The annual simulations show that, although the conventional CCGT power plant works worse in Las Vegas, owing to the higher temperatures, the ISCC system operates better in Las Vegas than in Almeria, because of solar hybridization is especially well coupled to the CCGT power plant in the frequent days with great solar radiation and high temperatures in Las Vegas. The complementary effect will be clearly seen in these cases, because the thermal power provided by the solar field compensates the gas turbine part load performance due to the high temperatures. The economical analysis points out that this hybrid scheme is a cheaper way to exploit concentrated solar energy, although it is limited to a small fraction of the combined cycle power. The analysis also shows that the marginal cost of solar electricity is strongly influenced by the goodness of coupling, so this cost is lower in Las Vegas than in Almeria.
机译:在这项工作中,分析了太阳热能对改善燃气联合循环在炎热和干燥环境中的性能的贡献,以评估该技术的潜力,并以直接蒸汽发电(DSG)为特色。非常适合在此任务中取得良好结果的候选人。拟议的特殊综合太阳能联合循环(ISCC)电厂由DSG抛物槽形场组成,该DSG抛物槽场与联合循环燃气轮机(CCGT)电厂的底部蒸汽循环耦合。对于此分析,太阳能热电厂以太阳能调度模式运行:燃气轮机始终仅在环境条件下满负荷运行,而蒸汽轮机则得到一定程度的提升以适应太阳能场的热杂交。尽管分析的目的是从最广泛的角度研究这种互补效应,但还是给出了两个相关的示例,分别对应于两个著名的地点:地中海气候的西班牙阿尔梅里亚(Almeria)(西班牙)和气候炎热的拉斯维加斯(美国)。气候干燥。年度模拟显示,尽管由于温度较高,常规CCGT电厂在拉斯维加斯的运行情况较差,但由于太阳能电池与CCGT电厂的耦合特别良好,因此ISCC系统在拉斯维加斯比阿尔梅里亚的运行状况更好。拉斯维加斯频繁发生的太阳辐射和高温的日子。在这些情况下,可以清楚地看到互补的效果,因为由太阳能场提供的热能补偿了由于高温导致的燃气轮机部分负荷性能。经济分析指出,这种混合方案是利用集中太阳能的一种较便宜的方法,尽管它只限于联合循环功率的一小部分。分析还表明,太阳能发电的边际成本受到耦合优劣的强烈影响,因此,拉斯维加斯的这一成本低于阿尔梅里亚的成本。

著录项

  • 来源
    《Applied Energy》 |2011年第9期|p.3228-3238|共11页
  • 作者单位

    Department of Energy Engineering, Universidad Nacional de Education a Distancia (UNED), C/Juan del Rosat No. 12, 28040 Madrid, Spain;

    Department of Energy Engineering, Universidad Nacional de Education a Distancia (UNED), C/Juan del Rosat No. 12, 28040 Madrid, Spain;

    Department of Energy Engineering, Universidad Nacional de Education a Distancia (UNED), C/Juan del Rosat No. 12, 28040 Madrid, Spain;

    Department of Energy and Fluid Mechanics Engineering, Madrid Polytechnical University, C/Jose Gutierrez Abascal No. 2, 28006 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    integrated solar combined cycle; direct steam generation; parabolic trough; solar thermal power plants;

    机译:一体化太阳能联合循环;直接产生蒸汽;抛物线槽;太阳能热电厂;

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