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Optimal Design of a Molten Salt Thermal Storage Tank for Parabolic Trough Solar Power Plants

机译:抛物线槽式太阳能电站熔盐储罐的优化设计

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This paper presents an optimal design procedure for internally insulated, carbon steel, molten salt thermal storage tanks for parabolic trough solar power plants. The exact size of the vessel and insulation layers and the shape of the roof are optimized by minimizing the total investment cost of the storage system under three technical constraints: remaining within the maximum allowable values of both temperature and stress in the steel structure, and avoiding excessive cooling and consequent solidification of the molten salt during long periods of no solar input. The thermal, mechanical and economic aspects have been integrated into an iterative step-by-step optimization procedure, which is shown to be effective through application to the case study of a 600 MWh thermal storage system. The optimal design turns out to be an internally insulated, carbon steel storage tank characterized by a maximum allowable height of 11 m and a diameter of 22.4 m. The total investment cost is about 20% lower than that of a corresponding AISI 321H stainless steel storage tank without internal protection or insulation.
机译:本文提出了一种用于抛物槽式太阳能发电厂的内部绝缘碳钢熔融盐储罐的最佳设计程序。通过在以下三个技术约束下将存储系统的总投资成本降至最低,来优化容器和隔热层的确切尺寸以及屋顶的形状:将其保持在钢结构中温度和应力的最大允许值之内,以及避免长时间没有太阳输入时,熔融盐会过度冷却并随之凝固。热,机械和经济方面已集成到一个迭代的逐步优化过程中,通过将其应用于600 MWh蓄热系统的案例研究,表明该方法是有效的。最佳设计结果是内部绝缘的碳钢储罐,其最大允许高度为11 m,直径为22.4 m。与没有内部保护或隔热层的相应AISI 321H不锈钢储罐相比,总投资成本降低了约20%。

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