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Velocity structure of the upper mantle discontinuities beneath North America from waveform inversion of broadband seismic data using a genetic algorithm

机译:遗传算法对宽带地震数据进行波形反演的北美下地幔不连续性速度结构

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We present a velocity structure of the mantle discontinuities beneath the United States from a full waveform inversion of broadband seismic data. The data consist of 10 moderate earthquakes in the western United States that were recorded on 13 broadband seismometers across the United States operated by the U. S. National Seismic Network. A total of 36 seismograms with distance ranging from 1150 to 2700 km were used. A full waveform inversion based on two-dimensional modeling and one-dimensional inversion methods using a genetic algorithm was adopted. The inversion method is objective, provides error bounds on the model, and does not require any a priori information about these discontinuities. We find that the upper discontinuity is similar to 10 km thick, from 395 to 405 km, where the velocity increases from 8.80 to 9.15 km s(-1) with a velocity gradient of 0.035 s(-1). The lower discontinuity is similar to5 km thick, occurring over a depth range of 650-655 km, where the velocity increases from 10.20 to 10.70 km s(-1). Our results are in agreement with previous studies of the lower discontinuity but do not agree for a sharp (< 5 km) upper mantle discontinuity. [References: 32]
机译:我们从宽带地震数据的全波形反演中介绍了美国下方的地幔不连续性的速度结构。该数据包括美国西部发生的10次中度地震,这些地震记录在美国国家地震台网在美国境内的13台宽带地震仪上。总共使用了36个地震图,距离范围为1150至2700 km。采用基于二维建模和基于遗传算法的一维反演方法的全波形反演。反演方法是客观的,提供了模型的误差范围,并且不需要有关这些不连续性的任何先验信息。我们发现上部不连续面的厚度类似于10 km厚度,从395 km到405 km,其中速度从8.80 km增加到9.15 km s(-1),速度梯度为0.035 s(-1)。较低的不连续性类似于5 km厚,发生在650-655 km的深度范围内,其中速度从10.20 km s增加到10.70 km s(-1)。我们的结果与先前关于下部不连续性的研究相吻合,但是对于尖锐的(<5 km)上地幔不连续性却并不认同。 [参考:32]

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