新英格兰泥块和陆架断裂带沉积物地质声学特性的直接测量a)。

IF 2.1 2区 物理与天体物理 Q2 ACOUSTICS
Megan S Ballard, Dante D Garcia, Kevin M Lee, Gabriel R Venegas, Andrew R McNeese, Preston S Wilson, Jason D Chaytor
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引用次数: 0

摘要

本文报告了利用声学岩芯采集系统在新英格兰泥块(NEMP)和南部陆架断裂区采集的一组原始直接声速测量结果。在新英格兰泥块内采集的岩心显示,泥块的范围与声速有关,西侧的声速较慢,衰减较小。在陆架断裂区,200 米和 350 米等深线之间的声速最高。北大西洋海洋学计划泥层的深度依赖性包括声速梯度为负 28 s-1 的表层。泥柱的其余部分在等速层上具有 6.2 s-1 的微弱正声速梯度。通过比较原位和非原位声速测量结果,可以评估重力取芯作业对沉积物的扰动影响。上层 2.5 米处的微小差异归因于取芯过程造成的扰动引起的地质声学特性变化。2.5 米以下的平均差异接近于零,表明这些沉积物受到的扰动很小。最后,在最大穿透深度附近对剪切速度进行了现场测量。剪切速度与大约同一深度区间的声速有很好的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct measurements of sediment geoacoustic properties in the New England Mud Patch and shelf breaka).

This paper reports on an original set of direct sound speed measurements collected with the acoustic coring system in the New England Mud Patch (NEMP) and shelf break area to the south. Cores collected within the NEMP show range-dependence of the mud with slower sound speed and lower attenuation on the west side. In the shelf break region, the highest sound speeds are observed between the 200- and 350-m isobaths. The depth-dependence of the mud layer in the NEMP includes a surficial layer with a negative sound speed gradient of 28 s-1. The remainder of the mud column has a weak positive sound speed gradient of 6.2 s-1 over an isovelocity layer. Comparison between in situ and ex situ sound speed measurements provides an assessment of the effects of sediment disturbance from gravity coring operations. Small differences in the upper 2.5 m were attributed to the changes in the geoacoustic properties caused by disturbance from the coring process. Below 2.5 m, the average difference is close to zero, suggesting that these sediments were minimally disturbed. Finally, an in situ measurement of shear speed was obtained near the depth of maximum penetration. The shear speed was well correlated with sound speed from approximately the same depth interval.

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来源期刊
CiteScore
4.60
自引率
16.70%
发文量
1433
审稿时长
4.7 months
期刊介绍: Since 1929 The Journal of the Acoustical Society of America has been the leading source of theoretical and experimental research results in the broad interdisciplinary study of sound. Subject coverage includes: linear and nonlinear acoustics; aeroacoustics, underwater sound and acoustical oceanography; ultrasonics and quantum acoustics; architectural and structural acoustics and vibration; speech, music and noise; psychology and physiology of hearing; engineering acoustics, transduction; bioacoustics, animal bioacoustics.
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