首页> 外文期刊>Nuclear Technology >SUITABILITY OF DRIFT-FLUX MODELS, VOID-FRACTION EVOLUTION, AND 3-D FLOW PATTERN VISUALIZATION DURING STATIONARY AND TRANSIENT FLASHING FLOW IN A VERTICAL PIPE
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SUITABILITY OF DRIFT-FLUX MODELS, VOID-FRACTION EVOLUTION, AND 3-D FLOW PATTERN VISUALIZATION DURING STATIONARY AND TRANSIENT FLASHING FLOW IN A VERTICAL PIPE

机译:垂直管道中瞬态和瞬态闪烁流动过程中的漂移通量模型,空隙率演化和3-D流动模式可视化的适用性

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摘要

An assessment of void-fraction correlations and drift-flux models applied to stationary and transient flashing flows in a vertical pipe has been performed. Experiments have been carried out on a steam/water loop that can be operated both in forced- and natural-circulation conditions to provide data for the assessment. The GE-Ramp and Dix models are found to give very good predictions both for forced- and natural-circulation flow conditions, in the whole range of measured void fractions. Advanced instrumentation, namely, wire-mesh sensors, has been used to obtain a detailed picture of the void-fraction development in the system. On the basis of experimental data, a three-dimensional visualization of the transient flow pattern during flashing was achieved. A transition of the flow pattern between bubbly and slug/ churn regimes was found.
机译:评估了空隙率相关性和漂移通量模型,该模型适用于垂直管道中的平稳和瞬态闪蒸流。已经在蒸汽/水回路上进行了实验,该回路可以在强制循环和自然循环条件下运行,以提供评估数据。发现GE-Ramp和Dix模型可在整个测量的空隙率范围内对强迫循环和自然循环流动条件给出非常好的预测。先进的仪器,即金属丝网传感器,已用于获得系统中空隙分数发展的详细信息。根据实验数据,实现了闪蒸过程中瞬态流动模式的三维可视化。发现气泡和弹头/搅动状态之间的流动模式转变。

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