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NUMERICAL INVESTIGATION ON HEAT REMOVAL CAPACITY OF PASSIVE RESIDUAL HEAT REMOVAL HEAT EXCHANGER

机译:被动式余热除热换热器除热能力的数值研究

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In the present study, thermal-hydraulics characteristics of AP1000 passive residual heat removal heat exchanger (PRHR-HX) at initial operating stage were analyzed based on the porous media models. The data predicated by RELAP5 under the condition of the station blackout was employed as the inlet flow rate and temperature boundary of CFD calculation. The heat transfer from the primary side coolant to the in-containment refueling water storage tank (IRWST) side fluid was calculated in a three-dimensional geometry during iterations, and the distributed resistances were added into the C-type tube bundle regions. Three-dimensional distributions of velocity and temperature in the IRWST were calculated by the CFD code ANSYS FLUENT. The primary temperature, heat transfer coefficients of two sides and the heat transfer were obtained using the coupled heat transfer between the primary side and the IRWST side. The simulation results indicated that the water temperature rises gradually which leads to a thermal stratification phenomenon in the tank and the heat transfer capability decreases with an increase of water temperature. The present results indicated that the method containing coupled heat transfer from the primary side fluid to IRWST side fluid and porous media model is a suitable approach to study the transient thermal-hydraulics of PRHR/IRWST system.
机译:在本研究中,基于多孔介质模型分析了AP1000被动余热去除热交换器(PRHR-HX)在初始运行阶段的热工水力特性。在站停电的情况下,由RELAP5预测的数据被用作CFD计算的入口流量和温度边界。从一次侧冷却剂到内部加油储水箱(IRWST)侧流体的热传递在迭代过程中以三维几何形状进行计算,并将分布的阻力添加到C型管束区域中。通过CFD代码ANSYS FLUENT计算了IRWST中速度和温度的三维分布。使用一次侧和IRWST侧之间的耦合传热获得一次温度,两侧的传热系数和传热。仿真结果表明,水温逐渐升高,导致水箱内发生热分层现象,传热能力随水温的升高而降低。目前的结果表明,包含从一次侧流体到IRWST侧流体的耦合传热和多孔介质模型的方法是研究PRHR / IRWST系统瞬态热工水力的合适方法。

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