首页> 外文期刊>Journal of Failure Analysis and Prevention >Erosion Failure of Horizontal Pipe Reducing Wall in Power-Law Fluid Containing Particles via CFD–DEM Coupling Method
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Erosion Failure of Horizontal Pipe Reducing Wall in Power-Law Fluid Containing Particles via CFD–DEM Coupling Method

机译:水平管减少墙体在含有CFD-DEM耦合法的含粒子的水平管液中的侵蚀失效

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AbstractA CFD–DEM-based two-phase flow model and a test-based erosion model are used to obtain the specific erosion on the reducing wall of sudden contraction section. The dimensionless filtered governing equations are adopted for incompressible power-law fluid flow, and the Hertz–Mindlin (no-slip) model for particle–particle and particle–wall contact. The annular reducing wall is divided into two erosion areas in radial direction based on erosion form and divided into four parts in the circumferential direction. The calculated result is verified with a full-scale experiment, and it shows a good agreement. The calculated results show that the erosion rate of the reducing wall is mainly determined by the flow velocity, and the erosion area is affected by liquid viscosity. The serious erosion region is located in the inner edge of the sample lower part, and this region expends to the outer circumference with the increasing flow velocity and the reducing liquid viscosity. The increase in flow velocity expands the flow region where the particle can impact the wall and thus increases the particle impact numbers.Graphical Abstract
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机译:<![CDATA [ <标题>抽象 <帕拉ID =“PAR1”>基于CFD-DEM的两相流模型和基于测试侵蚀模型用于获得突然收缩部分的还原墙上的特定侵蚀。用于不可压缩的电力 - 法流体流动,采用无量纲滤波的控制方程,以及用于颗粒颗粒和粒子壁接触的赫兹思路(无滑动)模型。环形还原壁基于侵蚀形式的径向沿径向侵蚀区域,并在圆周方向上分成四个部分。计算结果以全规模的实验验证,并显示出良好的一致性。计算结果表明,还原壁的侵蚀率主要由流速确定,侵蚀区域受液体粘度的影响。严重的侵蚀区域位于样品下部的内边缘,该区域消耗到外圆周,流速增加和降低液体粘度。流速的增加扩展了颗粒可以影响壁的流动区域,从而增加颗粒撞击数。 <标题>图形摘要 ara> <图类别=“标准”float =“否”id“id =”fima“> ]]>

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