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Finite-Difference Modeling of Acoustic and Gravity Wave Propagation in Mars Atmosphere: Application to Infrasounds Emitted by Meteor Impacts

机译:火星大气中声波和重力波传播的有限差分模型:在流星撞击产生的次声中的应用

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摘要

The propagation of acoustic and gravity waves in planetary atmospheres is strongly dependent on both wind conditions and attenuation properties. This study presents a finite-difference modeling tool tailored for acoustic-gravity wave applications that takes into account the effect of background winds, attenuation phenomena (including relaxation effects specific to carbon dioxide atmospheres) and wave amplification by exponential density decrease with height. The simulation tool is implemented in 2D Cartesian coordinates and first validated by comparison with analytical solutions for benchmark problems. It is then applied to surface explosions simulating meteor impacts on Mars in various Martian atmospheric conditions inferred from global climate models. The acoustic wave travel times are validated by comparison with 2D ray tracing in a windy atmosphere. Our simulations predict that acoustic waves generated by impacts can refract back to the surface on wind ducts at high altitude. In addition, due to the strong nighttime near-surface temperature gradient on Mars, the acoustic waves are trapped in a waveguide close to the surface, which allows a night-side detection of impacts at large distances in Mars plains. Such theoretical predictions are directly applicable to future measurements by the INSIGHT NASA Discovery mission.
机译:声波和重力波在行星大气中的传播在很大程度上取决于风况和衰减特性。这项研究提出了一种专为声重力波应用量身定制的有限差分建模工具,该工具考虑了背景风,衰减现象(包括二氧化碳气体特有的弛豫效应)的影响以及由于密度随高度而减小的波放大作用。该仿真工具以2D直角坐标表示,并且首先通过与基准问题的解析解决方案进行比较进行了验证。然后将其应用于模拟由全球气候模型推断出的各种火星大气条件下流星对火星的撞击的地面爆炸。通过与大风环境中的2D射线追踪进行比较,可以验证声波的传播时间。我们的模拟预测,撞击产生的声波可以折射到高海拔风管表面。此外,由于火星在夜间的近地表温度梯度很强,声波被困在靠近地表的波导中,从而可以在夜间探测火星平原远距离的撞击。这种理论预测直接适用于INSIGHT NASA发现任务的未来测量。

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