基于电磁波与红外的含水率与渗透性能测试系统及方法

By combining electromagnetic waves and infrared testing systems, the dynamic moisture content and permeability of soil and rock samples were jointly inverted and visualized in three dimensions. This solved the limitations of single measurement methods in existing technologies and improved the testing accuracy and intelligence.

CN121540608BActive Publication Date: 2026-07-17SHAANXI DINGRUICHENG GEOTECHNICAL ENG CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHAANXI DINGRUICHENG GEOTECHNICAL ENG CO LTD
Filing Date
2025-12-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies for testing the dynamic moisture content and permeability of soil and rock samples suffer from limitations such as single measurement methods, lack of dynamic moisture content testing capabilities, lack of fusion and inversion mechanisms in independent signal processing, and low levels of automation and intelligence, making it difficult to achieve full-field, continuous, and high-resolution monitoring.

Method used

An electromagnetic wave and infrared-based testing system is adopted, combining an electromagnetic wave detection module and an infrared thermal imaging module. Through signal fusion and inversion modules, the dynamic water content and permeability of soil and rock samples are jointly inverted, and three-dimensional visualization is performed using multimodal feature vectors and neural networks.

Benefits of technology

It enables coordinated monitoring and comprehensive characterization of seepage processes and dynamic changes in water content of soil and rock samples. It features high spatiotemporal resolution, strong real-time response capability, adaptability to various test conditions, and intelligent analysis and processing functions, significantly improving test accuracy and information level.

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Abstract

本申请提供的基于电磁波与红外的岩土含水率与渗透性能测试系统及方法,具体涉及岩土工程测试与多源信号检测技术领域;该测试系统通过岩土样品渗透测试平台实现岩土渗透实验的构建,电磁波检测模块实现对岩土内部含水状态的感知,红外热成像模块实现对岩土表面湿润边界与渗流扩展特征的感知,数据采集与控制模块实现对渗透实验的整体控制及介电特征与红外图像的采集,信号融合与反演模块实现对介电特征与红外图像的融合及动态含水率与渗透性能的联合反演,结果处理与可视化模块实现反演结果的可视化展示;本发明具有非破坏性、实时性、高空间分辨率、强适应性及智能化处理能力等显著优点,实现了对岩土样品渗透行为与含水率演化过程的综合表征。
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