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FILM-DROPLET SPLIT CORRELATION AT THE ONSET OF ANNULAR-MIST FLOW

机译:环形雾流发作的薄膜液滴分开相关性

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Boiling transition in BWR fuels occurs in the annular-mist flow regime. Many subchannel analysis methods have been developed to predict critical power, as well as flow and void distributions, in BWR fuel bundles. Two-phase annular-mist flow can be better simulated with two-fluid, three-field formulations for liquid film flow on surfaces, vapor and entrained droplet flows inside the core of the subchannel. To predict dryout of BWR fuels in the annular flow regime, the liquid film mass balance is analyzed using appropriate droplet entrainment and deposition models along with evaporation to determine the condition when film dries out or a dry patch forms (i.e. boiling transition). It is of great importance to define a correct boundary condition for the liquid flow split between the liquid film and entrained droplets at the onset of annular flow to accurately model the entrainment and deposition at the downstream annular flow, predict dryout location and corresponding critical power. No reliable information on the film-droplet split at onset of annular flow have been found in the literature and most analyses have been performed with an assumption that a single value is valid for wide ranges of operating conditions. In this study, a new film-droplet split correlation in the form of film fraction is developed based on available data with steam-water experiments. The liquid split correlation is then applied to simulate film flow measurement data over a wide range of exit quality.
机译:BWR燃料中的沸腾过渡发生在环形雾气流状态。已经开发出许多子信道分析方法以预测BWR燃料束中的临界功率以及流量和空隙分布。用双流体模拟两相环形雾流量,用于液体膜在表面上的液体膜流动,蒸汽和夹带的液滴在子信道的核心内流动。为了在环形流动状态下预测BWR燃料的干扰,使用适当的液滴夹带和沉积模型分析液体膜质量平衡,以及蒸发以确定薄膜干燥或干贴片形式(即沸腾的转变)时的条件。为在环形流动开始处的液体膜和夹带液滴之间分开的液体流动的液体流动的正确边界条件非常重要,以精确地模拟下游环形流动的夹带和沉积,预测干扰位置和相应的临界功率。在文献中发现了关于环形流动的薄膜液滴分裂的可靠信息,并且已经进行了大多数分析,假设单个值对于宽范围的操作条件有效。在该研究中,基于蒸汽水实验的可用数据开发了薄膜级分形式的新薄膜液滴分离相关性。然后应用液体分流相关性以在广泛的出口质量上模拟膜流量测量数据。

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