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Analysis of Velocity and Pressure Fields for an Axisymmetric Body in Water at Different Motion Attitudes

机译:不同运动姿态下水中轴对称体的速度场和压力场分析

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Considering that the marine environment is complex and in order to overcome the difference between the buoyancy and the gravity of the underwater vehicle, there will be a certain attack angle between the axisymmetric body and its heading. It results in a certain angle between the direction of incoming stream and the axis of the axisymmetric body. This paper focuses on analyzing the velocity and pressure fields of axisymmetric body at different motion attitudes. It can be found that the pressure coefficient and velocity are distributed identically in the circumferential direction when the axisymmetric body is in attitude B. The pressure coefficient is smaller and the velocity is larger at the lower part of the head curved surface (S2) of the axisymmetric body when the axisymmetric body is in attitude A. When the axisymmetric body is in attitude C, the pressure coefficient is smaller and the velocity is larger at the upper part of the head curved surface (S3) of the body. Corresponding, the value of the sound pressure level of the flow noise and the radiation direction of the flow noise are different.
机译:考虑到海洋环境复杂,为克服浮力与水下航行器重力之间的差异,轴对称体与其航向之间会存在一定的迎角。这导致流入流的方向与轴对称体的轴之间有一定角度。本文着重分析了不同运动姿态下轴对称物体的速度和压力场。可以发现,当轴对称体处于姿态B时,压力系数和速度沿周向均匀分布。在轴对称体的头部曲面(S2)的下部,压力系数较小,速度较大。当轴对称体处于姿态A时,轴对称体。当轴对称体处于姿态C时,在其头部曲面(S3)的上部压力系数较小,速度较大。相应地,流动噪声的声压级的值和流动噪声的辐射方向是不同的。

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