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Study of Two-Phase Natural Circulation Cooling of Core Catcher System Using Scaled Model

机译:基于比例模型的核心捕手系统两相自然循环冷却研究

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摘要

A two-phase natural circulation cooling has been proposed to remove melted core decay heat by external core catcher cooling system during sever accident scenario. In this paper, two types of the core catcher cooling loops, one with heated loop and the other adiabatic loop simulated with air water system are analytically studied. First, a scaling analysis was carried out for natural circulation flow in a closed loop. Based on the scaling analyses, simulation of two-phase natural circulation is carried out both for air-water and steam-water system in an inclined rectangular channel. The heat flux corresponding to the decay heat is simulated with steam generation rate or air flux into the test section to produce equivalent flow quality and void fraction. Design calculations were carried out for typical core catcher design to estimate the expected natural circulation rates. The natural circulation flow rate and two-phase pressure drop were obtained for different heat inputs or equivalent air injection rates expressed as void fraction for a select downcomer pipe size. These results can be used to scale a steam water system using scaling consideration presented. The results indicate that the air-water and steam water system show similar flow and pressure drop behavior.
机译:已经提出了两相自然循环冷却,以在严重事故情况下通过外部堆芯捕集器冷却系统去除熔化的堆芯衰减热。本文分析了两种类型的堆芯捕集器冷却回路,一种是加热回路,另一种是用空气水系统模拟的绝热回路。首先,对闭环中的自然循环流量进行了定标分析。在定标分析的基础上,对矩形斜通道内的空气-水和蒸汽-水系统进行了两相自然循环模拟。用蒸汽产生速率或进入测试部分的空气通量模拟与衰减热相对应的热通量,以产生等效的流动质量和空隙率。对典型的核心捕集器设计进行了设计计算,以估计预期的自然循环速率。对于不同的热量输入或等效的空气注入速率,获得自然循环流量和两相压降,表示为选定降液管尺寸的空分。这些结果可用于使用提出的缩放比例来缩放蒸汽水系统。结果表明,空气-水和蒸汽水系统显示出相似的流量和压降行为。

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