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Multiple fluvial processes detected by riverside seismic and infrasound monitoring of a controlled flood in the Grand Canyon

机译:大峡谷的受控洪水通过河边地震和次声监测检测到多个河流过程

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摘要

As rivers transport water and sediment across Earth's surface, they radiate elastic and acoustic waves. We use seismic and infrasound observations during a controlled flood experiment (CFE) in the Grand Canyon to show that three types of fluvial processes can be monitored from outside the channel. First, bed-load transport under conditions of evolving bed mobility is identified as the dominant seismic source between 15 and 45 Hz. Two lower-frequency seismic bands also excited by the CFE exhibited greater power increases and are consistent with source processes related to fluid rather than sediment transport. The second fluvial seismic source is inferred to be fluid tractions on the rough riverbed, which drive the maximum seismic power increase at 0.73 Hz, but do not excite infrasound. Waves at the fluid-air interface are suggested as a third source, which generates a common 6–7 Hz peak in seismic and infrasound responses to the CFE.
机译:当河流在整个地球表面运送水和沉积物时,它们会辐射弹性波和声波。在大峡谷进行的受控洪水实验(CFE)中,我们使用地震和次声观测来表明可以从通道外部监视三种类型的河流过程。首先,在不断变化的床层活动性条件下的床层荷载运输被确定为15至45 Hz之间的主要地震源。同样由CFE激发的两个低频地震带显示出更大的功率增加,并且与与流体而不是泥沙输送有关的震源过程一致。推断第二个河流地震震源是在粗糙河床上的流体牵引,它在0.73 Hz时驱动最大地震功率增加,但不会激发次声。建议将流体-空气界面处的波作为第三个源,在对CFE的地震和次声响应中产生一个常见的6-7 Hz峰值。

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