The nonlinear behavior of acoustic waves and their dissipation in the upper atmosphere is studied on the example of infrasound waves generated by vertical motion of the ground surface during the M-w 8.3 earthquake that occurred about 46km from Illapel, Chile on 16 September 2015. To conserve energy, the amplitude of infrasound waves initially increased as the waves propagated upward to the rarefied air. When the velocities of air particles became comparable with the local sound speed, the nonlinear effects started to play an important role. Consequently, the shape of waveform changed significantly with increasing height, and the original wave packet transformed to the "N-shaped" pulse resembling a shock wave. A unique observation by the continuous Doppler sounder at the altitude of about 195km is in good agreement with full wave numerical simulation that uses as boundary condition the measured vertical motion of the ground surface.
机构:
Univ Khemis Miliana, Fac Sci & Tech, Ain Defla, AlgeriaUSTHB, Fac Phys, Phys Theor Lab, Bab Ezzouar 16111, Algeria
Fellah, M.
Mitri, F. G.
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Chevron, Santa Fe, NM 87508 USAUSTHB, Fac Phys, Phys Theor Lab, Bab Ezzouar 16111, Algeria
Mitri, F. G.
Depollier, C.
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LUNAM Univ Maine, Univ Maine UFR STS, UMR CNRS 6613, Lab Acoust, F-72085 Le Mans 09, FranceUSTHB, Fac Phys, Phys Theor Lab, Bab Ezzouar 16111, Algeria