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Study on the complete rotational characteristic of coolant pump in the gas-liquid two-phase operating condition

机译:气液两相工况下冷却液泵全旋转特性的研究

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One of the most serious accidents of reactor coolant pump was the loss of coolant accident (LOCA) which may happen in any part of component of reactor system or coolant liquid circulation pipe. During the accident, the pump will be in a gas-liquid two-phase mixing operating state. The paper researches the full-flow hydraulic characteristics of forward rotation and reverse rotation of reactor coolant pump in the gas-liquid two-phase operating condition, respectively, in many operating conditions, such as the forward-rotation positive-flow, the forward-rotation negative-flow, the reverse-rotation positive-flow and the reverse-rotation negative-flow, and analyzes the laws of gas volume distribution in the overall fluid area with different gas fractions in different operating conditions using CFX analog computation method. The research finds with different gas fractions, the reactor coolant pump's torque complete characteristics curve and head complete-characteristics curve show basically the same changing laws, i.e., the pump's operating torque was directly proportional to water head, and when the two-phase flow's gas fraction reaches 0.40, the pump's safe flow interval was only 0.087Q(o), basically losing the ability carrying safe flow to reactor core; in different gas fraction conditions, the homogeneous distribution of gas phase component in the fluid area was mainly related to the operating condition of pump, and when the volume flow rate deviates from the designed operating point, the fluid medium's gas phase and liquid phase will separate to some extent, and in the same operating condition with different gas fractions, the distribution of gas fractions in the fluid area shows basically the same laws. (C) 2018 Elsevier Ltd. All rights reserved.
机译:反应堆冷却剂泵最严重的事故之一是冷却剂损失事故(LOCA),这可能发生在反应堆系统组件或冷却剂液体循环管的任何部分。在事故期间,泵将处于气液两相混合运行状态。本文研究了在气液两相工况下,在许多工况下,如正转正流,正转,正转,空转等反应堆冷却剂泵正转和反转的全流水力特性。利用CFX模拟计算方法,分析了不同工况下不同气体分数下流体在整个流体区域内的气体体积分布规律,分析了旋转负流,反向正向流和反向负向流的规律。研究发现,在不同气体分数的情况下,反应堆冷却剂泵的扭矩完成特性曲线和扬程完全特性曲线显示出基本相同的变化规律,即泵的运行扭矩与水头成正比,并且两相流的气体分数达到0.40时,泵的安全流量间隔仅为0.087Q(o),基本丧失了向反应堆堆芯输送安全流量的能力。在不同的气体馏分条件下,流体区域中气相成分的均匀分布主要与泵的工作状态有关,当体积流量偏离设计工作点时,流体介质的气相和液相会分离。在一定程度上,并且在相同的工作条件下,不同的气体馏分在流体区域中的气体馏分分布表现出基本相同的规律。 (C)2018 Elsevier Ltd.保留所有权利。

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