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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Comparison of Heat Transfer Fluid and Direct Steam Generation technologies for Integrated Solar Combined Cycles
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Comparison of Heat Transfer Fluid and Direct Steam Generation technologies for Integrated Solar Combined Cycles

机译:集成太阳能联合循环的传热流体和直接蒸汽产生技术的比较

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摘要

At present time and in the medium term, Solar Thermal Power Plants are going to share scenario with conventional energy generation technologies, like fossil and nuclear. In such a context, Integrated Solar Combined Cycles (ISCCs) may be an interesting choice since integrated designs may lead to a very efficient use of the solar and fossil resources. In this work, different ISCC configurations including a solar field based on parabolic trough collectors and working with the so-called Heat Transfer Fluid (HTF) and Direct Steam Generation (DSG) technologies are compared. For each technology, four layouts have been studied: one in which solar heat is used to evaporate part of the high pressure steam of a bottoming Rankine cycle with two pressure levels, another that incorporates a preheating section to the previous layout, the third one that includes superheating instead of preheating and the last one including both preheating and superheating in addition to the evaporation. The analysis is made with the aim of finding out which of the different layouts reaches the best performance. For that purpose, three types of comparisons have been performed. The first one assesses the benefits of including a solar steam production fixed at 50 MW_(th). The second one compares the configurations with a standardised solar field size instead of a fixed solar steam production. Finally, the last one consists on an even more homogeneous comparison considering the same steam generator size for all the configurations as well as standardised solar fields. The configurations are studied by mean of exergy analyses. Several figures of merit are used to correctly assess the configurations. Results reveal that the only-evaporative DSG configuration becomes the best choice, since it benefits of both low irreversibility at the heat recovery steam generator and high thermal efficiency in the solar field.
机译:当前和中期,太阳能热电厂将与化石和核能等常规能源发电技术共享情景。在这种情况下,集成太阳能联合循环(ISCC)可能是一个有趣的选择,因为集成设计可能会导致非常有效地利用太阳能和化石资源。在这项工作中,比较了不同的ISCC配置,包括基于抛物槽收集器的太阳能场以及与所谓的热传递流体(HTF)和直接蒸汽产生(DSG)技术一起工作。对于每种技术,已经研究了四种布局:一种使用太阳能将具有两个压力水平的底部朗肯循环的高压蒸汽的一部分蒸发,另一种将预热部分合并到先前的布局中,第三种采用包括过热而不是预热,最后一个包括除蒸发之外的预热和过热。进行分析的目的是找出哪种不同的布局可以达到最佳性能。为此,执行了三种类型的比较。第一个评估包括将太阳能蒸汽产量固定为50 MW_th的好处。第二个比较标准配置的太阳能场大小,而不是固定的太阳能蒸汽产量。最后,最后一个基于更均匀的比较,考虑到所有配置和标准太阳能场的蒸汽发生器尺寸相同。通过火用分析研究该构型。几个品质因数可用于正确评估配置。结果表明,仅蒸发的DSG配置成为最佳选择,因为它既具有热回收蒸汽发生器的低不可逆性又具有太阳能领域的高热效率的优点。

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