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Numerical simulations of high speed train impulsive noise using an unsteady deforming mesh algorithm

机译:不稳定变形网格算法的高速列车脉冲噪声的数值模拟

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An impulsive noise produced by a train-tunnel interaction is numerically simulated by using an unsteady deforming mesh algorithm. The applied algorithm for a moving body needs special treatments to satisfy a geometric conservation law (GCL) to preserve a free stream. It is validated in the cases of a 1D moving piston and 2D pulsating and oscillating cylinder problems. The computational results show good agreements with analytic solutions. Finally, the behaviors of the various pressure waves due to the axisymmetric model train passing through a finite tunnel are numerically simulated. The computational results show that the propagation of waves in the tunnel and the pulse-like impulsive wave radiation at the exit of the tunnel depend on various physical and numerical parameters, such as the shape of the train, the train speed, the tunnel length and the resolution of the numerical scheme, and that the emitted impulsive noise decays in proportion to 1/r, not from the exit itself but from a point near the exit, due to the complex wave field.
机译:通过使用不稳定的变形网格算法在数值模拟由火车隧道交互产生的冲动噪声。用于移动体的应用算法需要特殊的治疗来满足几何保守法(GCL)以保持自由流。在1D移动活塞和2D脉动和振荡圆筒问题的情况下验证。计算结果与分析解决方案显示出良好的协议。最后,数值模拟了由于通过有限隧道的轴对称模型列车引起的各种压力波的行为。计算结果表明,隧道中的波浪中的波在隧道中的脉冲脉冲波辐射依赖于各种物理和数值参数,例如列车的形状,列车速度,隧道长度和数值方案的分辨率,并且发出的脉冲噪声与1 / R成比例地衰减,而不是从出口本身衰减,而是由于复杂的波场,从出口附近的点。

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