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Stability of boundary layer flow based on energy gradient theory

机译:基于能量梯度理论的边界层流动的稳定性

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摘要

The flow of the laminar boundary layer on a flat plate is studied with the simulation of Navier-Stokes equations. The mechanisms of flow instability at external edge of the boundary layer and near the wall are analyzed using the energy gradient theory. The simulation results show that there is an overshoot on the velocity profile at the external edge of the boundary layer. At this overshoot, the energy gradient function is very large which results in instability according to the energy gradient theory. It is found that the transverse gradient of the total mechanical energy is responsible for the instability at the external edge of the boundary layer, which induces the entrainment of external flow into the boundary layer. Within the boundary layer, there is a maximum of the energy gradient function near the wall, which leads to intensive flow instability near the wall and contributes to the generation of turbulence.
机译:利用Navier-Stokes方程的模拟研究了平板上的层边界层的流动。 利用能量梯度理论分析边界层的外边缘和壁附近的流动不稳定性。 仿真结果表明,边界层的外边缘处的速度曲线上存在过冲。 在这种过冲,能量梯度函数非常大,从而导致根据能量梯度理论不稳定。 发现总机械能的横向梯度负责边界层外边缘处的不稳定性,其诱使外部流入边界层。 在边界层内,墙壁附近的能量梯度函数最大,这导致墙壁附近的密集流动不稳定,并有助于产生湍流。

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