首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >SIMULATION OF JET ISSUED INTO TWO-LAYER DENSITY-STRATIFIED FLUID BY VORTEX IN CELL METHOD COMBINED WITH IMMERSED BOUNDARY METHOD
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SIMULATION OF JET ISSUED INTO TWO-LAYER DENSITY-STRATIFIED FLUID BY VORTEX IN CELL METHOD COMBINED WITH IMMERSED BOUNDARY METHOD

机译:涡旋结合浸没边界法的两层密度分层流体射流的涡流模拟

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Jet flow issued into two-layer density-stratified fluid in a cylindrical tank is numerically simulated. Vortex in cell (VIC) method combined with an Immersed Boundary (IB) method, which is presented by the current authors, is applied to the simulation. The upper and lower fluids are water and a NaCl-water solution, respectively, and the lower fluid is issued vertically upward from a nozzle on the bottom of the tank. The Reynolds number Re defined by the jet velocity and the nozzle diameter ranges from 95 to 1188, and the mass concentration of the NaCl-water solution C_0 is set at 0 and 0.02. The simulation highlights that the jet behavior relative to the density interface and the resultant mixing phenomena depend on Re. Such simulated results are confirmed to agree well with the experimentally visualized ones, demonstrating the validity of the present simulation method.
机译:数值模拟了圆柱罐中两层密度分层流体中的射流。当前作者提出的单元内涡旋(VIC)方法和浸入边界(IB)方法相结合。上部和下部流体分别是水和NaCl水溶液,下部流体是从水箱底部的喷嘴垂直向上喷出的。由喷射速度和喷嘴直径限定的雷诺数Re在95至1188的范围内,并且NaCl水溶液C_0的质量浓度被设置为0和0.02。仿真结果表明,相对于密度界面的射流行为以及由此产生的混合现象取决于Re。证实了这种模拟结果与实验可视化结果很好地吻合,证明了本模拟方法的有效性。

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