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Computational analysis of solid particle-erosion produced by bottom ash slurry in 90° elbow

机译:灰渣在90°弯头中产生的固体颗粒侵蚀的计算分析

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Present work is devoted to investigation of the slurry erosion wear in a 90° elbow by using commercial Computational fluid dynamics (CFD) code FLUENT. Discrete phase erosion wear model was used to predict erosion in 90° elbow by solving the governing equations through Euler-Lagrange scheme. Particle tracking was considered by using standard k-ε turbulence scheme for the flow of bottom ash slurry. Erosion wear in elbow was investigated along with velocity distribution and turbulence intensity. The radius-to-diameter ( r/D ) ratio was taken as 1.5. Results show that erosion rate increases with increase in velocity. Present numerical simulation model holds close agreement with previous studies. Distorted patterns appeared at low velocities. The V-shape pattern appeared on the outer wall of elbow at high velocities. The low velocity region occurs around circumference of elbow wall at outer wall of elbow due to stimulation of the drag forces near the wall region.
机译:当前的工作致力于通过使用商业计算流体力学(CFD)代码FLUENT研究90°弯头中的泥浆侵蚀磨损。通过使用欧拉-拉格朗日法求解控制方程,使用离散相腐蚀磨损模型来预测90°弯头的腐蚀。通过使用标准的k-ε湍流方案对底灰浆的流动进行了颗粒跟踪。研究了弯头的侵蚀磨损以及速度分布和湍流强度。半径与直径(r / D)之比为1.5。结果表明,腐蚀速率随速度的增加而增加。目前的数值模拟模型与以前的研究非常吻合。低速时出现扭曲的图案。 V形图案以高速度出现在肘部外壁上。由于在壁区域附近的拖曳力的刺激,低速区域出现在肘壁外壁的肘壁周围。

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