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首页> 外文期刊>Annals of nuclear energy >Development of siphon breaker simulation program for investing loss of coolant accident of a research reactor
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Development of siphon breaker simulation program for investing loss of coolant accident of a research reactor

机译:开发用于研究堆冷却液损失的虹吸断路器仿真程序

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Under the design conditions of a research reactor, the siphon phenomenon induced by pipe rupture can cause continuous efflux of water. In order to prevent water efflux, an additional facility is necessary. A siphon breaker is a type of safety facility that can resist the loss of coolant effectively. However, analysis of siphon breaking is complex since it comprises two-phase flow and there are many inputs to be considered. For this reason, in order to facilitate the analysis and design of the siphon breaker, a simulation program based on fluid mechanics was developed using MFC (Microsoft Foundation Class) programming. From Bernoulli's equation, the velocity and quantity as well as undershooting height, water level, pressure, friction coefficient, and factors related to the two-phase flow could be calculated. The Chisholm model, which was included in the program to analyze the two-phase flow, can predict the results in a manner similar to those obtained from a real-scale experiment. By modifying the values of the input parameters and analyzing the results with respect to loss of coolant accident (LOCA) locations, the size of pipe and coefficients could be compared easily. Since simulation results are shown in the form of a graph, the user is able to confirm the total breaking situation. Furthermore, it is possible to save the entire simulation results. The simulation results were shown to be similar to those obtained from the real-scale experiment and the program functioned correctly. By using the program, the user is easily able to confirm the status of the siphon breaking, and the program is also helpful in the design of the siphon breaker. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在研究堆的设计条件下,管道破裂引起的虹吸现象会引起水的连续流出。为了防止水流出,需要额外的设施。虹吸断路器是一种可以有效抵抗冷却液损失的安全设施。但是,虹吸破裂的分析很复杂,因为它包括两相流并且要考虑许多输入。因此,为了便于虹吸断路器的分析和设计,使用MFC(Microsoft Foundation Class)编程开发了基于流体力学的仿真程序。根据伯努利方程,可以计算出速度和数量以及下冲高度,水位,压力,摩擦系数以及与两相流有关的因素。程序中包括的Chisholm模型用于分析两相流,该模型可以以类似于从实际实验中获得的方式来预测结果。通过修改输入参数的值并分析有关冷却剂事故(LOCA)位置损失的结果,可以轻松比较管道的尺寸和系数。由于仿真结果以图表的形式显示,因此用户可以确认总断裂情况。此外,可以保存整个模拟结果。结果表明,模拟结果与从真实实验获得的结果相似,并且程序运行正常。通过使用该程序,用户可以容易地确认虹吸破坏的状态,并且该程序也有助于虹吸破坏器的设计。 (C)2016 Elsevier Ltd.保留所有权利。

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