温跃层
内波
流体体积法
机械
分层流
分层流
混合层
计算流体力学
内部流动
地质学
气象学
流量(数学)
湍流
物理
海洋学
作者
Kwan‐Woo Kim,Ju-Han Lee,Kwang-Jun Paik,Weoncheol Koo,Young-Gyu Kim
标识
DOI:10.1177/1475090220974161
摘要
The water temperature in the ocean varies according to its depth and generates a thermocline layer. An internal wave can be excited by an object moving near the thermocline layer because the density changes owing to the water temperature. The internal wave propagates and interacts with the surface wave. This study aims to investigate the internal wave propagation in a two-layer stratified flow, generated by 2D hydrofoil (NACA0012) using a RANS based CFD model. Eulerian multiphase methods were used for the modeling of the two-layer stratified flow; Volume of Fluid (VOF) model and mixture model. A two-layer stratified fluid consisting of air(ρ air )-water1(ρ w1 )-water2(ρ w2 ) is considered instead of the thermocline layer to simplify the numerical simulations. The generation and propagation of the internal wave were investigated, with different configurations of the speed and submergence depth of the hydrofoil. The result suggested that the VOF model shows better agreement with the experimental data compared to the mixture model.
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