流体体积法
腐蚀
喷射(流体)
机械
喷嘴
湍流
空化
分离涡模拟
半径
大涡模拟
脉搏(音乐)
材料科学
冲击压力
加速度
流量(数学)
地质学
物理
雷诺平均Navier-Stokes方程
光学
经典力学
地貌学
探测器
计算机安全
计算机科学
热力学
作者
B. Liu,Yan Pan,Feiyue Ma
标识
DOI:10.1080/19942060.2019.1695675
摘要
Various erosion patterns generated through the cavitating water jet impacts under ambient pressure conditions were investigated in experiments and numerical simulations. A series of normalized stand-off distances ls/do ∈ [2.5 13.5] were studied during the erosion acceleration period. Two ring-like erosion areas were observed for comparatively low ls/do ∈ [2.5 6.5]. To gain insight into the pulse pressure loading on the erosion area, numerical calculations were performed using the volume of fluid (VOF) interface capturing methodology combined with the large-eddy simulation turbulence model. The erosion patterns are clarified based on the mass loss and distribution features of the eroded regions. The first ring, generated by the cavitation clouds impingement outside the central stagnation area, mainly contributes to the mass loss. The second ring moves inward, merges into the inner ring and eventually vanishes with increasing ls/do. High pressure pulsation is found around the locations of the maximum erosion and the approximate intermediate radius of the second ring. The pressure pulsation in the first ring area are dominated by the frequency of the vortices shedding from the jet nozzle. Several higher frequencies are found as the spectral features of the eroded regions in each pattern.
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