A method for efficiently identifying a favorable ore-forming three-dimensional spatial position of a sandstone type uranium deposit

By analyzing the basin's structural patterns and deep hydrocarbon fluid migration, combined with formation fluid pressure studies, favorable mineralization locations were screened and classified. This solved the problem of uncertainty in determining mineralization locations in existing uranium exploration technologies, and improved the efficiency and effectiveness of uranium exploration.

CN122410652APending Publication Date: 2026-07-17BEIJING RES INST OF URANIUM GEOLOGY

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING RES INST OF URANIUM GEOLOGY
Filing Date
2026-03-24
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing uranium exploration methods fail to effectively consider the influence of deep hydrocarbon-bearing fluids when identifying favorable three-dimensional mineralization locations, resulting in uncertain judgments and an inability to provide information related to mineralization depth.

Method used

By analyzing the favorable mineralization structural patterns, sand body distribution, and deep hydrocarbon fluid migration in the basin, combined with formation fluid pressure studies, favorable three-dimensional spatial locations for mineralization were identified and classified using surface energy spectroscopy measurements and aerial radiometric anomaly measurements.

Benefits of technology

This technology enables efficient identification of favorable three-dimensional spatial locations for uranium deposits in sandstone-type uranium deposits, improving uranium exploration efficiency and saving costs.

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Abstract

本发明属于砂岩型铀矿勘探技术领域,具体涉及一种高效识别砂岩型铀矿有利成矿三维空间位置的方法,包括:查明烃源岩的发育特征以及空间分布规律,筛选深部发育烃源岩地区;对深部发育烃源岩地区进行构造发育空间样式剖析,筛选发育深大断裂及相关褶皱地区,识别有利成矿水平空间位置;对发育深大断裂及相关褶皱地区开展地层流体压力研究,筛选开始超压地层以上的层位作为成矿有利垂向空间位置;对开始超压地层以上的层位开展岩性和构造分析,筛选发育构造减压区的厚层砂岩层位,识别砂岩型铀矿有利成矿三维空间位置;通过地表能谱测量和航放异常测量,对有利成矿三维空间位置进行分级。本发明通过分析盆地有利成矿构造样式、砂体分布和深部烃类流体运移,高效识别砂岩型铀矿有利铀成矿三维空间。
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