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Numerical and experimental study on thermal-hydraulic behaviors in the secondary side of passive residual heat removal heat exchanger

机译:无源残余散热热交换器二次侧热液压行为的数值和实验研究

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Passive residual heat removal heat exchanger (PRHR HX), as a key component of the passive residual heat removal system (PRHRS) in the advanced reactors of CAP1400 and AP1000, should have sufficient heat transfer capacity to remove core decay heat during the accidents. In this paper, experiments and numerical simulations are constructed to explore the secondary side flow and heat transfer characteristics of a miniaturized PRHR HX that comprises 6 x 7 C-shaped tubes located in the center of a rectangular tank. In the three-dimensional (3D) numerical simulation, the C-shaped tubes are simplified as porous media and the drift flux model with the distributed resistance method is employed to simulate the two-phase flow in the secondary side of PRHR HX. The heat removal rate and mass transfer rate in the tank are estimated using empirical correlations. In the test, both the primary side and secondary side temperatures are measured. The bubbles generated on the tube outer walls are recorded using a high-speed camera. The local outer wall temperatures, total heat transfer rate and local water temperatures are all compared with experimental values to verify the simulation. The maximum deviation of the calculated heat transfer rate is less than 4.5%. The details about the secondary side flow conditions and bubble behaviors are analyzed. (C) 2020 Elsevier Ltd. All rights reserved.
机译:被动残余散热热交换器(PRHR HX),作为CAP1400和AP1000的先进反应器中的被动残留散热系统(PRHRS)的关键部件,应该具有足够的传热能力,以在事故期间去除核心衰变热量。在本文中,构建实验和数值模拟以探讨小型化PRHR HX的二次侧流量和传热特性,其包括位于矩形箱中心的6×7个C形管。在三维(3D)数值模拟中,C形管被简化为多孔介质,并且采用具有分布电阻法的漂移通量模型来模拟PRHR HX的二次侧的两相流。使用经验相关性估计罐中的散热速率和质量传递速率。在测试中,测量初级侧和次级侧温度。使用高速摄像头记录管外壁上产生的气泡。局部外墙温度,总传热速率和局部水温都与实验值进行比较,以验证模拟。计算的传热速率的最大偏差小于4.5%。分析了关于次要侧流动条件和气泡行为的细节。 (c)2020 elestvier有限公司保留所有权利。

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