张晓明, 吴玉庭, 张灿灿. 大型熔盐罐结构设计、温度分布与强度分析[J]. 北京工业大学学报, 2021, 47(9): 1064-1073. DOI: 10.11936/bjutxb2020010025
    引用本文: 张晓明, 吴玉庭, 张灿灿. 大型熔盐罐结构设计、温度分布与强度分析[J]. 北京工业大学学报, 2021, 47(9): 1064-1073. DOI: 10.11936/bjutxb2020010025
    ZHANG Xiaoming, WU Yuting, ZHANG Cancan. Temperature Distribution and Strength Analysis of Large-scale Molten Salt Thermal Storage Tank[J]. Journal of Beijing University of Technology, 2021, 47(9): 1064-1073. DOI: 10.11936/bjutxb2020010025
    Citation: ZHANG Xiaoming, WU Yuting, ZHANG Cancan. Temperature Distribution and Strength Analysis of Large-scale Molten Salt Thermal Storage Tank[J]. Journal of Beijing University of Technology, 2021, 47(9): 1064-1073. DOI: 10.11936/bjutxb2020010025

    大型熔盐罐结构设计、温度分布与强度分析

    Temperature Distribution and Strength Analysis of Large-scale Molten Salt Thermal Storage Tank

    • 摘要: 熔盐蓄热是目前太阳能热发电中应用最广泛的蓄热技术.为了进一步研究高温熔盐储罐的安全性,采用API(The American Petroleum Institute)650标准中规定的变点设计法及其相关规定,对储盐量约为1.65×104 m3大型高温熔盐罐进行了结构设计;利用计算流体力学软件Fluent软件对大型高温熔盐储罐进行了温度场分布模拟,验证了储罐保温结构的合理性,得到了罐内熔盐及罐体内部温度场分布规律;通过有限元分析软件ABAQUS对大型高温熔盐储罐进行了静力分析;根据顺序耦合法,对大型高温熔盐储罐稳定工况下的热应力进行了模拟计算,确定了稳定工况时温度梯度对罐体结构应力的影响,并根据第三强度理论完成了储罐应力评价.

       

      Abstract: Molten salt thermal storage is most widely used in the concentrating solar power system. To further research the high-temperature molten salt tank, a large-scale molten salt tank with the salt storage volume of 1.65×104 m3 was designed by variable point design method, which was specified in API 650 standard. Temperature distribution of the large-scale molten salt tank was simulated by computational fluid dynamics software of Fluent. Structure static analysis of the tank was conducted by using the finite element software of ABAQUS. Finally, the effect of temperature gradient on the thermal stress was verified through the thermal stress analysis of molten salt tank simulation by the sequential coupling method. At the same time, stress evaluation of the tank was calculated based on the 3rd strength theory of material.

       

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