首页> 外文会议>ASME/JSME Thermal Engineering Heat Transfer Conference >DEVELOPMENT OF THERMAL-HYDRAULIC CODE COUPLED WITH HEAT CONDUCTION IN STRUCTURE FOR THERMAL STRIPING PHENOMENA: DEVELOPMENT OF CALCULATION MODULE FOR TEMPERATURE DISTRIBUTION IN STRUCTURE
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DEVELOPMENT OF THERMAL-HYDRAULIC CODE COUPLED WITH HEAT CONDUCTION IN STRUCTURE FOR THERMAL STRIPING PHENOMENA: DEVELOPMENT OF CALCULATION MODULE FOR TEMPERATURE DISTRIBUTION IN STRUCTURE

机译:热 - 液压代码与热条纹现象结构中的热导电联合:结构模块的开发结构结构

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Thermal striping is one of the most important issues in terms of safety of Fast Breeder Reactors (FBRs). Thermal striping occurs where high temperature fluid mixes with low temperature one and it might cause structural damage. An analysis program ("MUGTHES") for fluid-structure thermal interaction has been developed to evaluate the thermal striping phenomena and to establish the evaluation method. MUGTHES consists of two calculation modules for thermal-hydraulic analysis and for heat conduction analysis in structure and a conjugated heat transfer model that connects both modules. Thus, thermal-hydraulic field and temperature field in structure can be calculated simultaneously. Boundary Fitted Coordinate (BFC) system is employed to treat complex geometries in FBR plants. Governing equations in BFC system are discretized using the finite-volume approach to keep these conservation conditions in computation. In this paper, detailed description of the evaluation method of spatial differential terms in the equations was described. Numerical simulations were performed using fundamental problems related to one dimensional transient heat conduction in a cube and to radial transient heat conduction in a cylinder, in order to verify the discretization method in BFC system and the calculation method for thermal interaction between two calculation regions. In addition, numerical simulation of T-junction piping system was carried out to investigate characteristics of temperature fluctuation and to confirm the applicability of the program to a practical problem.
机译:热条纹是快速育种反应器(FBRS)的安全性方面最重要的问题之一。热条纹发生,其中高温流体混合一度低,可能导致结构损坏。已经开发出用于流体结构热相互作用的分析程序(“短暂”)以评估热条纹现象并建立评估方法。 MuGTHES由两个计算模块组成,用于热液压分析和用于结构的热传导分析和连接两个模块的共轭传热模型。因此,可以同时计算恒温场和结构中的温度场。边界拟合坐标(BFC)系统用于治疗FBR植物中的复杂几何形状。使用有限体积方法离散化BFC系统中的控制方程,以保持计算中的这些保护条件。在本文中,描述了在等式中的空间差分术语的详细描述。使用与立方体中的一维瞬态导热和圆柱体径向瞬态导热相关的基本问题进行数值模拟,以验证BFC系统中的离散方法及两个计算区域的热交互的计算方法。此外,对T-结管道系统的数值模拟进行了调查温度波动的特点,并确认程序适用于实际问题。

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