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Determination of equivalent sound speed profiles for ray tracing in near-ground sound propagation

机译:确定近地声音传播中射线追踪的等效声速曲线

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摘要

The determination of appropriate sound speed profiles in the modeling of near-ground propagation using a ray tracing method is investigated using a ray tracing model which is capable of performing axisymmetric calculations of the sound field around an isolated source. Eigenrays are traced using an iterative procedure which integrates the trajectory equations for each ray launched from the source at a specific direction. The calculation of sound energy losses is made by introducing appropriate coefficients to the equations representing the effect of ground and atmospheric absorption and the interaction with the atmospheric turbulence. The model is validated against analytical and numerical predictions of other methodologies for simple cases, as well as against measurements for nonrefractive atmospheric environments. A systematic investigation for near-ground propagation in downward and upward refractive atmosphere is made using experimental data. Guidelines for the suitable simulation of the wind velocity profile are derived by correlating predictions with measurements. (c) 2007 Acoustical Society of America.
机译:使用光线跟踪模型研究了在使用光线跟踪方法对近地面传播进行建模时确定合适的声速剖面的方法,该模型可以执行隔离声源周围声场的轴对称计算。本征射线使用迭代过程进行跟踪,该过程对从光源沿特定方向发射的每条射线的轨迹方程进行积分。通过将适当的系数引入表示地面和大气吸收的影响以及与大气湍流的相互作用的方程式,可以进行声能损耗的计算。该模型针对其他简单案例的分析和数值预测以及针对非折光性大气环境的测量进行了验证。利用实验数据对近地向上和向下折射大气中的传播进行了系统研究。通过将预测值与测量值相关联,可以得出适用于风速剖面的模拟准则。 (c)2007年美国声学学会。

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