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A Direct Steam Generation Solar Power Plant With Integrated Thermal Storage

机译:集成储热装置的直接蒸汽发电太阳能发电厂

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For the future market potential of parabolic trough power plants with direct steam generation (DSG), it is beneficial to integrate a thermal storage system. Heat storage media based on phase change materials offer heat transfer at constant temperatures needed for the evaporation process. Different options for a plant layout are presented and discussed. The interactions between the three subsystems-solar field, power block, and thermal storage-are analyzed, and boundary conditions arising from the thermal storage system are identified. Compared with a system without storage the number of operating points increases significantly since different combinations of storage charge and discharge operations go along with a varying power output of the solar field. It is shown that the large number of theoretical operating points can be reduced to a subset with practical relevance. Depending on the live steam parameters a reheat is necessary within the power block. Compared with parabolic trough fields with a single phase heat transfer medium such as oil, a special heat exchanger configuration is needed for a DSG plant. Different alternatives based on available technologies are presented and evaluated.
机译:对于具有直接蒸汽发生(DSG)的抛物线槽式发电厂的未来市场潜力,集成蓄热系统是有益的。基于相变材料的储热介质在蒸发过程所需的恒定温度下提供热传递。介绍并讨论了工厂布局的不同选项。分析了三个子系统(太阳能场,功率块和热量存储)之间的相互作用,并确定了热量存储系统产生的边界条件。与没有存储的系统相比,工作点的数量显着增加,因为存储充电和放电操作的不同组合会伴随着太阳能场输出功率的变化。结果表明,大量的理论工作点可以简化为具有实际意义的子集。根据新鲜蒸汽参数,功率块内需要重新加热。与具有单相传热介质(例如油)的抛物槽形场相比,DSG工厂需要特殊的热交换器配置。介绍并评估了基于可用技术的不同替代方案。

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