Method for determining seabed penetration depth in marine seismic exploration

A. I. Mashoshin, A. V. Tsvetkov
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Abstract

   The paper introduces a straightforward method aimed at determining the depth of penetration into the seabed during marine seismic exploration through bottom sounding. This technique was developed to support the establishment of technical specifications for the components of an underwater robotic complex intended for seismic surveys beneath ice formations. These components include a suite of autonomous underwater vehicles (AUVs) outfitted with either geophones or short streamers equipped with hydrophone sensors, alongside high-precision positioning systems. The complex comprises an underwater docking station responsible for deploying AUVs to the designated work area, managing their operations, and towing low-frequency sound emitters. Moreover, it encompasses coastal infrastructure dedicated to the maintenance of AUVs and the support of the docking station. The developed method considers various factors including the pressure exerted by the sound emitter and the energy dissipation of the probing signal due to wave front expansion, signal transmission into and back from the ground, spatial damping during signal propagation in water and soil, and reflection from oil or gas-containing lenses. Illustrative examples demonstrate the computation of ground penetration depth in shallow and deep waters, contingent upon the pressure exerted by the sound emitter towed at a depth of 100 meters. It also assesses the method’s reliability by comparing the computed outcomes against existing experimental data.
确定海洋地震勘探中海底穿透深度的方法
本文介绍了一种简单直接的方法,旨在通过海底探测确定海洋地震勘探期间的海底穿透深度。开发该技术的目的是支持为用于冰层下地震勘测的水下机器人综合体的组件制定技术规范。这些组件包括一套自动潜航器(AUV),配有检波器或装有水听器传感器的短幡,以及高精度定位系统。综合设施包括一个水下对接站,负责将自动潜航器部署到指定工作区、管理其运行以及拖曳低频声发射器。此外,还包括专门用于维护 AUV 和支持对接站的沿岸基础设施。所开发的方法考虑了各种因素,包括声发射器施加的压力和探测信号因波前扩展而产生的能量耗散、信号传入地面和从地面传回、信号在水中和土壤中传播时的空间阻尼以及含油或含气透镜的反射。示例演示了根据拖曳在 100 米深处的声发射器所施加的压力,计算浅水和深水的地面穿透深度。它还通过将计算结果与现有实验数据进行比较,评估了该方法的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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