地质学
水深测量
水听器
先验与后验
反演(地质)
声学
海床
偏移量(计算机科学)
曲率
垂直地震剖面
传感器阵列
大地测量学
地震学
计算机科学
几何学
物理
数学
哲学
海洋学
认识论
机器学习
构造学
程序设计语言
作者
Stan E. Dosso,Michael Riedel
摘要
This work presents a new approach to array element localization (AEL) for the sensors of a towed marine seismic array based on regularized inversion of direct and bottom-reflected acoustic ray travel times picked from recorded seismic sections. Depth-sensor measurements at a number of points along the array are included as a priori estimates (with uncertainties) in the inversion. The smoothest array shape consistent with the acoustic data and prior estimates is determined by minimizing the array curvature or roughness. A smooth array shape is physically reasonable; in addition, minimizing array curvature provides an a priori model for the correlation between hydrophone positions that allows the estimation of both the offset and depth of hydrophones that record only one (or even no) acoustic arrival due to the shadowing effects of water-column refraction or reflection from arbitrary bathymetry. The AEL inversion is applied to a 102-sensor, 1.2-km towed array to correct receiver positions in the seismic velocity analysis of a seabed gas hydrate survey.
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