期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
瞬变电磁法在矿井水害溯源中的应用
1
作者 王鑫鑫 张石 +1 位作者 强洋洋 郭峻齐 《陕西地质》 2024年第1期62-68,共7页
全面查清采掘工作面及其周围老空巷道水分布范围等水文地质条件,科学合理划定防治水“三区”是煤矿防治水工作的底线要求。本文针对黄陇侏罗纪煤田煤矿井下巷道局部滴淋水,采用瞬变电磁法中心回线装置进行探测,通过加密测点、多角度探... 全面查清采掘工作面及其周围老空巷道水分布范围等水文地质条件,科学合理划定防治水“三区”是煤矿防治水工作的底线要求。本文针对黄陇侏罗纪煤田煤矿井下巷道局部滴淋水,采用瞬变电磁法中心回线装置进行探测,通过加密测点、多角度探测、三维反演电阻率展布、多维度成像分析等技术,进行溯源调查,查清了水源所在的地层、延伸、导通等情况,并结合区内地质资料,研判其对矿井安全生产的潜在危害,为矿井水害溯源调查提供一种高效准确的探查手段。 展开更多
关键词 矿井水害 瞬变电磁 水害溯源 三维反演电阻率展布
下载PDF
矿井瞬变电磁超前探测视电阻率扩散叠加解释方法 被引量:30
2
作者 胡雄武 张平松 +2 位作者 严家平 吴荣新 郭立全 《煤炭学报》 EI CAS CSCD 北大核心 2014年第5期925-931,共7页
受体积效应的影响,矿井巷道瞬变电磁超前探测时对异常区有不同程度的放大。为获得更为可靠的测试结果,在扇形超前观测系统的基础上,通过烟圈简化反演,并根据不同测点在巷道前方形成的烟圈交汇特征,推导视电阻率扩散叠加表达式及相关参... 受体积效应的影响,矿井巷道瞬变电磁超前探测时对异常区有不同程度的放大。为获得更为可靠的测试结果,在扇形超前观测系统的基础上,通过烟圈简化反演,并根据不同测点在巷道前方形成的烟圈交汇特征,推导视电阻率扩散叠加表达式及相关参数计算公式,实现了超前探测视电阻率扩散叠加解释方法,进一步提高对前方地质体的分辨能力。物理模型实验和现场探测实践表明,与常规视电阻率断面对比,视电阻率扩散叠加结果对异常体的判定效果优越性较强,对巷道掘进前方含水体的聚焦判定能力增加。 展开更多
关键词 矿井瞬变电磁 超前探测 视电阻率扩散叠加 扇形观测系统 烟圈简化反演 交汇特征
下载PDF
直流电阻率测深二维自适应正则化反演 被引量:3
3
作者 柳建新 彭艳华 +1 位作者 刘海飞 孙丽影 《物探化探计算技术》 CAS CSCD 2014年第4期385-388,共4页
直流电阻率测深二维反演中,正则化参数的选取影响反演结果分辨率及反演过程稳定性。利用主动约束平衡正则化因子,进行直流电阻率光滑约束最小二乘二维自适应反演,改善直流电阻率测深二维反演的分辨率与稳定性。在反演迭代过程中,正则化... 直流电阻率测深二维反演中,正则化参数的选取影响反演结果分辨率及反演过程稳定性。利用主动约束平衡正则化因子,进行直流电阻率光滑约束最小二乘二维自适应反演,改善直流电阻率测深二维反演的分辨率与稳定性。在反演迭代过程中,正则化因子根据模型参数的空间展布函数进行自适应计算、正则化参数的自适应计算。模拟数据反演结果验证了该方法的有效性与可行性,反演结果能准确地反映地下模型的真实电性结构。 展开更多
关键词 直流电阻率反演 自适应 主动约束平衡 正则化因子 模型分辨矩阵 展布函数
下载PDF
Magnetotelluric imaging and tectonic movement characteristics of the central Yunnan sub-block and its adjacent areas
4
作者 Tengfa CUI Xiaobin CHEN 《Science China Earth Sciences》 SCIE EI CAS CSCD 2023年第2期377-392,共16页
The central Yunnan sub-block is an important channel for southeast migration of materials in the Qinghai-Xizang Plateau,and therefore a key area to study tectonic movement and deformation.In this study,a three-dimensi... The central Yunnan sub-block is an important channel for southeast migration of materials in the Qinghai-Xizang Plateau,and therefore a key area to study tectonic movement and deformation.In this study,a three-dimensional electrical structure of the crust and upper mantle lithosphere was derived from magnetotelluric data inversion along a survey line across the central Yunnan sub-block.Results suggest that the middle and upper crust of the central Yunnan sub-block is comprised of several independent high-resistivity bodies.Deep extension of some faults was revealed according to electrical structure and relocated microseismicity.The Chenghai fault extends downward along the eastern boundary of a high-resistivity body.The Yuanmou fault dips to the west and extends to the depth along the boundary between two high-resistivity bodies.The Tanglang-Yimen fault cuts through a high-resistivity body in the middle and upper crust.There is an obvious high-conductivity C1 layer in the lower crust in the eastern part of the central Yunnan sub-block,and its western border displays an obvious structural boundary in the shallow part.The eastern part of the central Yunnan sub-block moves eastward relative to the western part(bounded by the west side of a high-resistivity body R3 in the C1 west).C1 is speculated to be characterized by low rheological strength and viscosity,thus reducing the resistance to eastward movement of the eastern part.Owing to the combined action of C1 and its western boundary,the eastern materials slip eastward faster relative to R3.Due to South China Block resistance,the middle and upper crust in the eastern part is within a compressional tectonic environment,consistent with the negative dilatation rate and the presence of compressive faults in this region.The C1 ground surface has a low strain rate,indicating weak deformation in this region and rigid motion dominance.Our results suggest that under the decoupling effect of the high-conductivity layer in the lower crust,the independent rigid blocks in the middle and upper crust can also exhibit tectonic deformation characteristics of rigid extrusion. 展开更多
关键词 MAGNETOTELLURIC three-dimensional inversion Electrical resistivity structure Central Yunnan sub-block Movement characteristics
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部