A New Integrated Downhole Tool for Primary Logging in the Open Hole of Wells in Infiltration-Type Uranium Deposits

IF 0.3 Q4 GEOCHEMISTRY & GEOPHYSICS Seismic Instruments Pub Date : 2023-03-20 DOI:10.3103/S0747923922070143
A. V. Legavko, D. A. Legavko
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Abstract

The article shows the relevance of integrating the main open hole logging methods for wells constructed during exploration and development of infiltration type uranium deposits. The article describes a new integrated downhole tool developed by the authors for simultaneous gamma, electrical, and directional logging. The downhole tool is based on a modular scheme; includes standard, modernized, and new functional logging units; and effectively combines analog, pulse, and digital output data formats. The modular architecture of the downhole tool allows open hole logging both individually, with separate methods and modules, and simultaneously in one common assembly. The results of field tests of the new tool at one of Russia’s infiltration deposits in the Trans-Ural uranium-ore district are presented, convincingly demonstrating the high accuracy of measurements and full compliance of the obtained logging data with regulatory instructions. Use of a new complex tool during geophysical surveys in the open holes of wells constructed during prospecting for, exploration, and development of uranium and ore deposits will increase the efficiency of logging operations, lower their cost, and reduce the forced downtime of drilling crews.

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一种用于渗透型铀矿床裸眼初次测井的新型综合井下工具
本文论述了在渗透型铀矿床勘探开发过程中,将主要裸眼测井方法整合起来的重要性。本文介绍了作者开发的一种新型集成井下工具,用于同时进行伽马、电气和定向测井。井下工具采用模块化方案;包括标准的、现代化的和新的功能测井单元;并有效地结合了模拟、脉冲和数字输出数据格式。井下工具的模块化结构允许使用单独的方法和模块单独进行裸眼测井,并同时在一个通用组合中进行测井。本文介绍了新工具在俄罗斯乌拉尔外铀矿区的一个渗透矿床的现场测试结果,令人信服地证明了测量的高精度和所获得的测井数据完全符合监管指令。在铀矿和矿床勘探、勘探和开发期间建造的裸眼井中,在地球物理测量中使用一种新的复杂工具,将提高测井作业的效率,降低成本,并减少钻井人员的强制停工时间。
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来源期刊
Seismic Instruments
Seismic Instruments GEOCHEMISTRY & GEOPHYSICS-
自引率
44.40%
发文量
45
期刊介绍: Seismic Instruments is a journal devoted to the description of geophysical instruments used in seismic research. In addition to covering the actual instruments for registering seismic waves, substantial room is devoted to solving instrumental-methodological problems of geophysical monitoring, applying various methods that are used to search for earthquake precursors, to studying earthquake nucleation processes and to monitoring natural and technogenous processes. The description of the construction, working elements, and technical characteristics of the instruments, as well as some results of implementation of the instruments and interpretation of the results are given. Attention is paid to seismic monitoring data and earthquake catalog quality Analysis.
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