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Parametric Study of Natural Circulation Flow in Molten Salt Fuel in Molten Salt Reactor

机译:熔盐反应器中熔盐燃料中自然循环流动的参数研究

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The Molten Salt Reactor (MSR) is one of the most promising system proposed by Generation IV Forum (GIF) for future nuclear reactor systems. Advantages of the MSR are significantly larger compared to other reactor system, and is mainly achieved from its liquid nature of fuel and coolant. Further improvement to this system, which is a natural circulating molten fuel salt inside its tube in the reactor core is proposed, to achieve advantages of reducing and simplifying the MSR design proposed by GIF. Thermal hydraulic analysis on the proposed system was completed using a commercial computation fluid dynamics (CFD) software called FLUENT by ANSYS Inc. An understanding on theory behind this unique natural circulation flow inside the tube caused by fission heat generated in molten fuel salt and tube cooling was briefly introduced. Currently, no commercial CFD software could perfectly simulate natural circulation flow, hence, modeling this flow problem in FLUENT is introduced and analyzed to obtain best simulation results. Results obtained demonstrate the existence of periodical transient nature of flow problem, hence improvements in tube design is proposed based on the analysis on temperature and velocity profile. Results show that the proposed system could operate at up to 750MW core power, given that turbulence are enhanced throughout flow region, and precise molten fuel salt physical properties could be defined.
机译:熔融盐反应器(MSR)是第四届核反应堆系统代表IV论坛(GIF)提出的最有前途的系统之一。与其他反应器系统相比,MSR的优点显着较大,主要从其燃料和冷却剂的液体性质实现。提出了对该系统的进一步改进,该系统是在反应器芯中的管内的天然循环熔融燃料盐,以实现减少和简化GIF提出的MSR设计的优点。建议系统的热水力分析使用Ansys Inc的商业计算流体动力学(CFD)软件进行了流利的软件。在熔融燃料盐和管冷却中产生的裂变热引起的裂变热引起的这种独特的天然循环流动背后的理论简要介绍了。目前,没有商业CFD软件可以完美地模拟自然循环流动,因此引入并分析了对流利的这种流动问题进行了建模,以获得最佳仿真结果。获得的结果证明了流动问题的周期瞬态性质,因此基于温度和速度分布的分析提出了管设计的改进。结果表明,拟议的系统可以在高达750MW的核心动力下运行,因为在整个流动区域增强了湍流,并且可以定义精确的熔融燃料盐物理性质。

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