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瞬变电磁三分量在地下管线勘察中的综合应用 被引量:1
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作者 林立松 王吟泽 +2 位作者 孔娟 王志刚 刘玉莉 《测绘通报》 CSCD 北大核心 2016年第S1期195-196,共2页
瞬变电磁法具有对低阻敏感的优点,动态瞬变电磁法是在传统瞬变电磁法上的一种装置改进,时时动态观测,效率更高。此方法在工程勘察中具有精确辨别的优点,即使单一测线,也能合理运用TEM的三分量响应特征,来成功辨别目标物的线性特征,并且... 瞬变电磁法具有对低阻敏感的优点,动态瞬变电磁法是在传统瞬变电磁法上的一种装置改进,时时动态观测,效率更高。此方法在工程勘察中具有精确辨别的优点,即使单一测线,也能合理运用TEM的三分量响应特征,来成功辨别目标物的线性特征,并且此方法既简便又安全,工作效率高,在管线勘察中的应用意义较大。本文主要介绍用超浅层动态瞬变电磁法在探测地下管线上的优点,突出TEM三分量综合应用的重要意义。 展开更多
关键词 动态瞬变电磁 三分量 地下管线 综合应用
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Continuous TDEM for monitoring shale hydraulic fracturing 被引量:14
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作者 Yan Liang-Jun Chen Xiao-Xiong +4 位作者 Tang Hao Xie Xing-Bing Zhou Lei Hu Wen-Bao and Wang Zhong-Xin 《Applied Geophysics》 SCIE CSCD 2018年第1期26-34,147,148,共11页
Monitoring and delineating the spatial distribution of shale fracturing is fundamentally important to shale gas production. Standard monitoring methods, such as time-lapse seismic, cross-well seismic and micro-seismic... Monitoring and delineating the spatial distribution of shale fracturing is fundamentally important to shale gas production. Standard monitoring methods, such as time-lapse seismic, cross-well seismic and micro-seismic methods, are expensive, time- consuming, and do not show the changes in the formation with time. The resistivities of hydraulic fracturing fluid and reservoir rocks were measured. The results suggest that the injection fluid and consequently the injected reservoir are characterized by very low resistivity and high chargeability. This allows using of the controlled-source electromagnetic method (CSEM) to monitor shale gas hydraulic fracturing. Based on the geoelectrical model which was proposed according to the well-log and seismic data in the test area the change rule of the reacted electrical field was studied to account for the change of shale resistivity, and then the normalized residual resistivity method for time lapse processing was given. The time-domain electromagnetic method (TDEM) was used to continuously monitor the shale gas fracturing at the Fulin shale gas field in southern China. A high-power transmitter and multi-channel transient electromagnetic receiver array were adopted. 9 h time series of Ex component of 224 sites which were laid out on the surface and over three fracturing stages of a horizontal well at 2800 m depth was recorded. After data processing and calculation of the normalized resistivity residuals, the changes in the Ex signal were determined and a dynamic 3D image of the change in resistivity was constructed. This allows modeling the spatial distribution of the fracturing fluid. The model results suggest that TDEM is promising for monitoring hydraulic fracturing of shale. 展开更多
关键词 Shale fracturing RESISTIVITY time lapse 3D imaging continuous monitoring
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