Department of Electronics and Telecommunications, Norwegian University of Science and Technology, NO-7491 Trondheim, Norway.
J Acoust Soc Am. 2010 Apr;127(4):2182-92. doi: 10.1121/1.3311822.
This paper describes a Bayesian inversion of acoustic reflection loss versus angle measurements to estimate the compressional and shear wave velocities in young uppermost oceanic crust, Layer 2A. The data were obtained in an experiment on the thinly sedimented western flank of the Endeavor segment of the Juan de Fuca Ridge, using a towed horizontal hydrophone array and small explosive charges as sound sources. Measurements were made at three sites at increasing distance from the ridge spreading center to determine the effect of age of the crust on seismic velocities. The inversion used reflection loss data in a 1/3-octave band centered at 16 Hz. The compressional and shear wave velocities of the basalt were highly sensitive parameters in the inversion. The compressional wave velocity increased from 2547 + or - 30 to 2710 + or - 18 m/s over an age span of 1.4 million years (Ma) from the spreading center, an increase of 4.5 + or - 1.0%/Ma. The basalt shear wave velocity increased by nearly a factor of 2, from approximately 725 to 1320 m/s over the same age span. These results show a decreasing trend of Poisson's ratio with age, from a value of 0.46 at the youngest site closest to the ridge axis.
本文描述了一种贝叶斯反演方法,用于根据声波反射损失与角度的测量值来估算年轻的大洋上层地壳(2A 层)中的压缩波和剪切波速度。这些数据是在对 Juan de Fuca 脊 Endeavor 段西侧沉积较薄的部位进行的一项实验中获得的,实验中使用了拖曳式水平水听器阵列和小型爆炸物作为声源。在远离脊扩散中心的三个位置进行了测量,以确定地壳年龄对地震速度的影响。反演使用了以 16 Hz 为中心的 1/3 倍频带中的反射损失数据。在反演中,玄武岩的压缩波和剪切波速度是高度敏感的参数。在从扩散中心开始的 140 万年的时间跨度内,压缩波速度从 2547 + or - 30 增加到 2710 + or - 18 m/s,增加了 4.5 + or - 1.0%/Ma。在同一时期内,玄武岩的剪切波速度增加了近两倍,从大约 725 增加到 1320 m/s。这些结果表明,泊松比随年龄呈下降趋势,从最靠近脊轴的最年轻的位置的 0.46 值开始。