自重式多参量海洋浅表层地质监测系统和数据解译方法

By using a self-weight multi-parameter marine shallow geological monitoring system and a multi-parameter fusion algorithm, the problems of bulky equipment and poor mobility in existing technologies have been solved. This system enables simultaneous acquisition of multiple parameters and accurate identification of geological conditions, making it suitable for complex marine environments.

CN122016941BActive Publication Date: 2026-07-17CHINA UNIV OF GEOSCIENCES (BEIJING) +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA UNIV OF GEOSCIENCES (BEIJING)
Filing Date
2026-02-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing marine shallow geological monitoring technologies rely on large equipment, which are inflexible, costly, and difficult to acquire multi-parameter, high-density spatial distribution data simultaneously. The data is not representative enough and cannot achieve comprehensive, three-dimensional monitoring.

Method used

A self-weight multi-parameter marine shallow geological monitoring system is adopted, including a main frame, data acquisition components and auxiliary penetration mechanism. Multiple probes are simultaneously penetrated into seabed sediments, integrating multiple sensors to collect multi-parameter data, and a comprehensive geological state index is calculated through a multi-parameter fusion algorithm.

Benefits of technology

It enables comprehensive, accurate, and dynamic monitoring of shallow marine geological data, improves the accuracy and reliability of geological condition identification, adapts to complex geological environments, and provides reliable data support.

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Abstract

本发明涉及海洋监测技术领域,主要提供一种自重式多参量海洋浅表层地质监测系统和数据解译方法。该系统包括主体框架和数据采集组件,主体框架顶部设置有用于与吊机连接的吊运结构;数据采集组件设置有多组且均匀阵列布置于主体框架上,数据采集组件包括活动平台,导向杆和探杆,导向杆纵向布置于主体框架上,活动平台可滑动地安装于导向杆上,探杆沿纵向布置且一段连接于活动平台底部,另一端可滑动地穿设于主体框架底部,探杆上集成设置有探头,多个数据采集组件的探头上所集成的探头种类不同。能够提高对海洋浅表层地质数据采集的全面性,从而提升地质状态判识的精度和可靠性。
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