Institute of Geophysics and Planetary Physics, Scripps Institution of Oceanography, La Jolla, California 92093-0225, USA.
J Acoust Soc Am. 2012 Aug;132(2):646-56. doi: 10.1121/1.4731468.
An accurate and efficient method to predict infrasound amplitudes from large explosions in the atmosphere is required for diverse source types, including bolides, volcanic eruptions, and nuclear and chemical explosions. A finite-difference, time-domain approach is developed to solve a set of nonlinear fluid dynamic equations for total pressure, temperature, and density fields rather than acoustic perturbations. Three key features for the purpose of synthesizing nonlinear infrasound propagation in realistic media are that it includes gravitational terms, it allows for acoustic absorption, including molecular vibration losses at frequencies well below the molecular vibration frequencies, and the environmental models are constrained to have axial symmetry, allowing a three-dimensional simulation to be reduced to two dimensions. Numerical experiments are performed to assess the algorithm's accuracy and the effect of source amplitudes and atmospheric variability on infrasound waveforms and shock formation. Results show that infrasound waveforms steepen and their associated spectra are shifted to higher frequencies for nonlinear sources, leading to enhanced infrasound attenuation. Results also indicate that nonlinear infrasound amplitudes depend strongly on atmospheric temperature and pressure variations. The solution for total field variables and insertion of gravitational terms also allows for the computation of other disturbances generated by explosions, including gravity waves.
需要一种准确高效的方法,以便根据不同的震源类型(包括流星体、火山爆发、核爆炸和化学爆炸),从大气中的大型爆炸中预测次声幅度。为此,开发了一种有限差分、时域方法,以解决一组非线性流体动力学方程,计算总压力、温度和密度场,而不是声扰动。该方法有三个关键特点,旨在合成真实介质中的非线性次声传播:包括引力项;允许包括分子振动损失在内的声波吸收,频率远低于分子振动频率;环境模型被约束为具有轴对称性,从而可以将三维模拟简化为二维。进行了数值实验,以评估算法的准确性,以及震源幅度和大气变化对次声波形和冲击波形成的影响。结果表明,非线性震源会使次声波形变陡,其相关频谱向更高频率移动,从而导致次声衰减增强。结果还表明,非线性次声幅度强烈依赖于大气温度和压力的变化。总场变量的解和引力项的插入也允许计算爆炸产生的其他干扰,包括重力波。