WWER反应堆核电机组动力事故模式蒸汽气体爆炸热化学条件准则

V. Vashchenko, V. Skalozubov, I. Korduba, Serhiy I. Kosenko, Olena H. Zhukova
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引用次数: 0

摘要

2011年福岛第一核电站(Fukushima-Daiichi NPP)重大事故给核电行业带来的主要教训是,考虑到安全系统的多重故障,有必要对相对不太可能发生的、具有灾难性环境后果的事件进行建模、分析和制定应急措施。蒸汽气体爆炸成为切尔诺贝利和福岛事故造成灾难性环境后果的主要原因之一。采用水-水堆的核电机组“紧”堆回路发生安全系统阀门失效和紧急蒸汽气体排除的动态应急模式下蒸汽-气体爆炸的判据和条件是由热力学和物理化学参数的变化率决定的。提出了一种确定具有“紧密”反应堆回路和安全阀失效的动态事故模式下蒸汽-气体爆炸发生准则和条件的方法,用于模拟初始应急事件-地震效应、大质量物体坠落等。发生氢气爆炸的条件是由燃料油壳温度的最大上升速度决定的,而蒸汽爆炸的条件是由汽化过程加剧所造成的压力的最大上升速度决定的。在动力应急模式下,蒸汽爆炸发生的判据由最大压力幅值和声扰动在蒸汽体积中的传播速度决定。在动力应急模式下,氢爆轰的判据由燃料壳温度的最大上升幅度和反应堆活动区内冷却剂的平均流量确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Criteria of thermochemical conditions of steam gas explosions in dynamic accident modes at nuclear power units with WWER reactors
The main lessons of the major accident at the Fukushima-Daiichi NPP in 2011 for the nuclear power industry identify the need to model, analyze and develop emergency measures for relatively unlikely events with catastrophic environmental consequences, taking into account multiple failures of safety systems. Steam-gas explosions became one of the main causes of the catastrophic environmental consequences of the Chernobyl and Fukushima accidents. Criteria and conditions for the occurrence of steam-gas explosions in dynamic emergency modes in the "tight" reactor circuit of nuclear power reactor units (NPP) with water-water reactors (WWER) with failures of safety systems valves and emergency steam gas removal are determined by the rate of change of thermodynamic and physico-chemical parameters. A method for determining the criteria and conditions for the occurrence of steam-gas explosions in dynamic accident modes with a "tight" reactor circuit and failure of safety valves for modeling the initial emergency events – seismic effects, falling of massive objects, etc. is presented. The conditions for the occurrence of hydrogen explosions are determined by the maximum rate of increase in the temperature of fuel oil shells, and the conditions for steam explosions are determined by the maximum rate of pressure increase as a result of the intensification of vaporization processes. The criteria for the occurrence of steam explosions in dynamic emergency modes are determined by the maximum pressure amplitude and the propagation speed of acoustic disturbances in the steam volume. And the criteria for hydrogen detonation in dynamic emergency modes are determined by the maximum amplitude of the increase in the temperature of the fuel shells and the average flow rate of the coolant in the active zone of the reactor.
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