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首页> 外文期刊>International Journal of Heat and Mass Transfer >Development of a two-phase flow mass quality correlation in the post-dryout DFFB regime during reflood transients
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Development of a two-phase flow mass quality correlation in the post-dryout DFFB regime during reflood transients

机译:在Reshrod瞬变期间开发干式后DFFB制度中的两相流量质量相关性

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摘要

A new semi-empirical two-phase flow mass quality correlation was developed for the post-dryout dispersed flow film boiling (DFFB) regime in a 7 x 7 rod bundle geometry. Starting from the fundamental physics describing the two-phase flow in the dispersed droplet flow regime, one-dimensional conservation governing equations were formulated for the liquid and vapor phases by considering a detailed characterization of the liquid droplet phase, based on which the liquid phase velocity was related to the key flow parameters. A scaling analysis was then performed within a sub-channel of the rod bundle to obtain an expression for the vapor drift velocity, from which a suitable relationship for the two-phase flow quality was derived using the drift flux model. It was found that the vapor drift velocity in the DFFB regime is affected by many variables including: the droplet size, velocities of the liquid and vapor phases, void fraction, vapor superheat and fluid properties, all of which are important in characterizing the dispersed droplet flow. Based on the results of the RBHT reflood tests, which simulate the reflood transients of a LWR during an accident scenario, a new mass quality correlation was developed that is applicable to the conditions with system pressure ranging from 138 to 414 kPa, rod bundle peak power between 0.98 and 1.97 kW/m, inlet liquid subcooling temperature from 11 to 83 K, and inlet flooding rate ranging from 0.0191 to 0.0508 m/s. Comparisons with experimental data indicated that the new correlation is able to predict the actual mass quality in the post-dryout two-phase flow regime with significantly improved accuracy not only for the rod bundle geometry but also for the tube geometry. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为7×7杆束几何形状中的干式分散的流动膜沸腾(DFFB)状态开发了新的半经验两相流量质量相关性。从描述分散液滴流动状态下的两相流的基本物理开始,通过考虑液滴相的详细表征液相速度来配制用于液体和蒸汽相的一维保守装置。与关键流量参数有关。然后在杆束的子通道内进行缩放分析,以获得蒸汽漂移速度的表达,从中使用漂移通量模型导出两相流质量的合适关系。结果发现,DFFB制度中的蒸汽漂移速度受许多变量的影响,包括:液滴尺寸,液体和蒸气相的速度,空隙级分,蒸气过热和流体性质,所有这些都在表征分散的液滴时非常重要流。基于RBHT reshood试验的结果,它在事故情景期间模拟了LWR的REVERDORD瞬态,开发了一种新的质量质量相关性,适用于系统压力范围为138至414 KPA的条件,杆束峰值功率在0.98和1.97 kW / m之间,入口液过冷温度为11至83 k,进气速率范围为0.0191至0.0508 m / s。具有实验数据的比较表明,新的相关性能够预测干扰后两相流动状态的实际质量质量,而不仅可以提高杆束几何形状而且对于管几何形状的精度显着提高。 (c)2019 Elsevier Ltd.保留所有权利。

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