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Numerical study on non-axisymmetric wall thinning in pipelines with swirling flow

机译:旋流管道非轴对称减薄的数值研究

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摘要

In order to understand the mechanisms of non-axisymmetric pipe-wall thinning in the Mihama nuclear power plant accident of 2004, a numerical simulation of pipe-wall thinning in an elbow-orifice pipeline with swirling flow was carried out based on mass and momentum transfer equations with a standard k-epsilon model of turbulence at a Reynolds number of 5.8 x 10(6). The pipe-wall thinning was evaluated on the basis of the mass transfer coefficient using the diffusion coefficient of ferrous iron in bulk water flow. The numerical simulation revealed that swirling flow with a certain level of swirl intensity generates a spiral motion downstream of the elbow and sustains a longer distance than expected from an elbow flow without swirl. This type of non-axisymmetrical flow triggers strongly biased flow at the orifice, which results in non-axisymmetric pipe-wall thinning downstream of the orifice. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了了解2004年美滨核电站事故中非轴对称管壁变薄的机理,基于质量和动量传递,对旋流弯管口管壁变薄进行了数值模拟。雷诺数为5.8 x 10(6)的标准kε湍流模型的方程。基于传质系数,使用二价铁在散装水流中的扩散系数来评估管壁变薄。数值模拟表明,具有一定水平的旋流强度的旋流会在弯头下游产生螺旋运动,并比没有旋流的弯头保持更长的距离。这种类型的非轴对称流动会在孔口处触发强烈的偏流,从而导致孔下游的非轴对称管壁变薄。 (C)2016 Elsevier Ltd.保留所有权利。

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