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Computational study of moderator flow and temperature fields in the calandria vessel of a heavy water reactor using the PHOENICS code

机译:使用PHOENICS代码对重型水反应堆排管容器中慢化剂流场和温度场的计算研究

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Three dimensional CFD simulations of the moderator flow in the calandria vessel of a heavy water reactor are performed using the PHOENICS CFD code. The model includes the entire calandria vessel consisting of three shells, calandria tubes and inlet and outlet nozzle openings. The computational model prepared in PHOENICS consists of (a) standard k-ε turbulence model, (b) PARSOL technique for handling curved objects in cartesian grids and (c) Boussinesq formulation for handling variable density flows. PHOENICS is validated by applying it to three different flow cases. The flow pattern in the calandria vessel under normal operating conditions is obtained through simulation. The effect of the presence of calandria tubes and heat generation on moderator flow pattern is studied. The simulation is also performed for various heat loads and moderator mass flow rates. The maximum temperature achieved by the moderator flow under various heat loads and moderator mass flow rates is obtained.
机译:使用PHOENICS CFD代码对重型反应堆的排管容器中的慢化剂流动进行了三维CFD模拟。该模型包括由三个壳体,加热管和入口和出口喷嘴孔组成的整个加热管容器。在PHOENICS中准备的计算模型由(a)标准k-ε湍流模型,(b)用于处理笛卡尔网格中弯曲物体的PARSOL技术和(c)用于处理可变密度流的Boussinesq公式组成。通过将PHOENICS应用于三个不同的流程案例,对其进行了验证。通过仿真获得了正常操作条件下排尿管血管中的流动模式。研究了加热管的存在和热量的产生对慢化器流型的影响。还针对各种热负荷和减速器质量流量执行了仿真。获得了在各种热负荷和减速器质量流量下减速器流量所达到的最高温度。

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