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首页> 外文期刊>Journal of nuclear engineering and radiation science >Modeling and Simulation of Subcooled Coolant Loss Through Circumferential Pipe Leakage
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Modeling and Simulation of Subcooled Coolant Loss Through Circumferential Pipe Leakage

机译:通过圆周管泄漏模拟和仿真脱硫冷却剂损失

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摘要

This work demonstrates the leak flow behavior of subcooled water at high pressure and high temperature through a narrow slit analogous to a pipe crack. The modeling and simulations are based on the loss of coolant accident in the primary loop piping of pressurized heavy water reactors where a subcooled liquid is subjected to a rapid depressurization. Prediction of critical leak flow pattern is crucial in the design methodology of costly high energy pipelines in the perspective of leak before break consideration. For a variety of entry and exit conditions, the interphase mass transfer has been studied using computational techniques. Presence of thermodynamic nonequilibrium was detected on several occasions due to high transit velocities. A comparison with experimental findings indicates the validity of a flashing model for safety analysis of similar high energy thermal systems.
机译:这项工作演示了过冷水在高压和高温下通过类似于管道裂纹的窄缝的泄漏流动行为。建模和仿真基于加压重水反应堆一回路管道中的冷却剂损失事故,其中过冷液体受到快速降压。从先漏后破的角度考虑,在昂贵的高能管道设计方法中,临界泄漏流型的预测至关重要。对于各种入口和出口条件,采用计算技术研究了相间传质。由于高传输速度,多次检测到热力学不平衡的存在。与实验结果的比较表明,闪蒸模型对于类似高能热力系统的安全分析是有效的。

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