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Off-design performance of molten salt-driven Rankine cycles and its impact on the optimal dispatch of concentrating solar power systems

机译:熔盐驱动兰氏峰循环的偏移设计性能及其对集中太阳能系统最优派遣的影响

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This paper presents a model for improving off-design performance predictions for molten salt-driven Rankine power cycles, such as in concentrating solar power tower applications. The model predicts cycle off-design performance under various boundary conditions, including molten salt inlet temperature, mass flow rate, and ambient temperature. The model is validated using industry performance data and benchmarked with results from the literature. A complete concentrating solar power plant, inclusive of solar heliostat field and receiver, is then considered, by implementing the Rankine cycle off-design performance results into the National Renewable Energy Laboratory's System Advisor Model software, which includes a tool that determines optimal power production schedules. The work improves upon the current System Advisor Model by updating off-design performance characteristics. A case study demonstrates the impact of cycle off-design behavior on annual performance for a stand-alone concentrating solar power system and a concentrating solar power-photovoltaic hybrid system. In addition, we demonstrate how cycle off-design performance influences optimal operator dispatch decisions and, thereby, overall system design and economics. We conclude that off-design cycle performance impacts "optimal" sub-system sizing, especially for a concentrating solar power-photovoltaic hybrid configuration in which concentrating solar power must dispatch in conjunction with photovoltaic generation.
机译:本文介绍了一种用于改善熔融盐驱动的兰氏峰功率循环的缺失性能预测的模型,例如在集中的太阳能塔应用中。该模型在各种边界条件下预测循环偏移性能,包括熔盐入口温度,质量流量和环境温度。使用行业绩效数据验证该模型,并以文献结果为基准。然后,通过在国家可再生能源实验室的系统顾问模型软件中实施Qualine循环空间偏离设计性能结果,将含有太阳能发电厂和接收器的完全集中的太阳能发电厂和接收器。 。该工作通过更新非设计性能特征来改善当前的系统顾问模型。案例研究展示了周期废除设计行为对独立集中太阳能系统和集中太阳能光伏混合系统的年度性能的影响。此外,我们还展示了循环偏移设计​​性能如何影响最佳的运营商调度决策,从而实现整体系统设计和经济学。我们得出结论,非设计周期性能影响“最优”子系统尺寸,特别是对于集中的太阳能电力光伏混合配置,其中集中太阳能必须与光伏发电结合起来。

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