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THE NATURAL CIRCULATION CHARACTERISTIC ANALYSIS OF AP 1000 IRWST

机译:AP 1000 IRWST的自然循环特性分析

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The natural convection passive residual heat removal system is an essential system of AP1000 nuclear power plants, which works in the non-LOCA accident. It can discharge the waste heat in the reactor core timely, and prevent the reactor accident. The In-Containment Refueling Water Storage Tank (IRWST) is one of the most important equipments of passive residual heat removal system, which supplies the hot trap to the system. The purpose of the paper is to research the natural circulation characteristic of fluid in IRWST. In this paper, FLUENT hydrodynamics analysis software was used to simulate the flow and heat-transfer characteristics of natural convection. Temperature field and flow field in different time or locations were compared to analyze the course of natural circulation. The error was evaluated by comparing the average temperature on the outlet of heat exchanger and the design temperature. The result showed that FLUENT could simulate the flow and heat-transfer characteristics of natural convection, and the error of the simulation was acceptable. In conclusion, natural convection heat exchanger of the study can discharge the waste heat in the reactor core timely. Due to the complex structure of the heat exchanger and the IRWST, the "heat-transfer dead zones" and "flow dead zones" are generated in local parts. The presence of dead zones affects the formation of natural convection. With the development of natural circulation, the temperature field and flow field in the IRWST keep stable and the temperate rise rate become slowly.
机译:自然对流被动余热去除系统是AP1000核电厂的重要系统,可在非LOCA事故中运行。可以及时将堆芯中的废热排出,防止反应堆事故的发生。箱内加油储水箱(IRWST)是被动余热去除系统最重要的设备之一,它为系统提供了热阱。本文的目的是研究IRWST中流体的自然循环特征。本文使用FLUENT流体力学分析软件来模拟自然对流的流动和传热特性。比较了不同时间或位置的温度场和流场,以分析自然循环过程。通过比较热交换器出口的平均温度和设计温度来评估误差。结果表明,FLUENT可以模拟自然对流的流动和传热特性,模拟误差可以接受。综上所述,研究的自然对流换热器可以及时将堆芯中的废热排出。由于热交换器和IRWST的复杂结构,在局部产生“传热死区”和“流动死区”。死区的存在会影响自然对流的形成。随着自然循环的发展,IRWST的温度场和流场保持稳定,温升速度逐渐变慢。

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