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Determination of key parameters for sizing the heliostat field and thermal energy storage in solar tower power plants

机译:确定太阳能塔发电装置定日镜场大小和储热的关键参数

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The optimal sizing of the solar tower power plant with thermal energy storage is critical for increasing the system reliability and reducing the investment cost. However, the combined effects of key design parameters for sizing the solar tower power plants, including design direct normal irradiance, solar multiple and thermal storage hours, on the thermo-economic system performance under different solar resources are still unclear. In this study, a thermo-economic model for a 50 MW solar tower power plant based on steam Rankine cycle with molten salt storage has been developed to explore the optimal combinations of these parameters at four sites in China. The coupled relationship between these parameters and their effects on the annual electricity generation, solar-to-electricity efficiency and levelized cost of energy have been identified. The results show that the optimal design direct normal irradiance for minimal levelized cost of energy depends on both the annual irradiation level and the distribution of solar irradiance, which differs from the recommended values obtained from the traditional methods. It is found that the irradiation received by heliostats at the optimal design condition accounts for a specific percentage (Le., 72-75%) of the annual irradiation for the cases in this study. The sensitive analysis by varying the main financial parameters indicates that the optimal design direct normal irradiance and the corresponding percentage slightly vary with the heliostat cost. The results can provide a theoretical reference for determining the optimal size of the heliostat field and thermal energy storage for solar tower power systems under different solar resources.
机译:具有热能存储的太阳能塔式发电厂的最佳尺寸对于提高系统可靠性和降低投资成本至关重要。但是,尚不清楚用于确定太阳能塔式发电厂规模的关键设计参数(包括设计直接法向辐照度,太阳能倍数和储热时间)对不同太阳能资源下的热经济系统性能的综合影响。在这项研究中,开发了一个基于蒸汽兰金循环和熔融盐存储的50兆瓦太阳能塔式发电厂的热经济模型,以探索中国四个地点的这些参数的最佳组合。这些参数之间的耦合关系及其对年发电量,太阳能发电效率和能源平均成本的影响已得到确认。结果表明,以最小的平准化能源成本为目标的最佳设计直接法向辐照度取决于年辐照度和太阳辐照度的分布,这与传统方法获得的推荐值不同。发现在本研究中,定日镜在最佳设计条件下所接收的辐射占年度辐射的特定百分比(Le。,72-75%)。通过更改主要财务参数进行的敏感分析表明,最佳设计的直接法向辐照度和相应的百分比随定日镜成本而略有不同。研究结果可为确定不同太阳能资源下太阳塔发电系统定日镜场和热能储存的最佳尺寸提供理论参考。

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