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首页> 外文期刊>Journal of geophysical research. Planets >Predicting the characteristics of thunder on Titan: A framework to assess the detectability of lightning by acoustic sensing
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Predicting the characteristics of thunder on Titan: A framework to assess the detectability of lightning by acoustic sensing

机译:预测泰坦上的雷电特征:通过声波感应评估雷电可探测性的框架

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摘要

The search for lightning is an important item on the agenda for the future exploration of Titan. Thunder, as a direct lightning signature, can be used, together with electromagnetic signals, to corroborate and quantify lightning. Using Cassini-Huygens data and model predictions, the main characteristics of thunder produced by a potential 20 km cloud-to-ground tortuous discharge are obtained and discussed. The acoustic power released right after the discharge decreases with increasing altitude, owing to the ambient pressure and temperature gradients. Ray tracing is used to propagate sound waves to the far field. Simulated thunder waveforms are characterized by fairly long codas-on the order of tens of seconds-arising from the small acoustic absorption (~10~(-4) dB/km). In the low-loss environment, the principal thunder arrival will likely have a large signal-to-noise ratio ensuring a high detection selectivity. The spectral content depends on the amount of energy released during the discharge. For an energy density of 5 kJ/m, the dominant contribution lies between 50 and 80 Hz; for 500 kJ/m, it shifts to lower frequencies between 10 and 30 Hz.
机译:寻找闪电是未来探索泰坦的重要议程。雷电作为直接的雷电签名,可以与电磁信号一起用于证实和量化雷电。利用卡西尼-惠更斯数据和模型预测,获得并讨论了潜在的20 km云对地曲折放电所产生的雷电的主要特征。由于周围压力和温度梯度,放电后立即释放的声功率会随着海拔的升高而降低。射线追踪用于将声波传播到远场。模拟的雷声波形的特征是,相对于较小的声吸收(〜10〜(-4)dB / km)而言,相当长的尾波会产生数十秒的数量级。在低损耗环境中,主要的雷声到达可能会具有较大的信噪比,从而确保较高的检测选择性。光谱含量取决于放电过程中释放的能量。对于5 kJ / m的能量密度,主要贡献在50到80 Hz之间。对于500 kJ / m,它会移至10至30 Hz之间的较低频率。

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