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补偿声波测井在裂缝地层的周波跳跃教学实验设计
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作者 于华伟 谭宝海 +2 位作者 苏远大 庄春喜 李刚 《教育教学论坛》 2018年第41期269-270,共2页
声波测井是石油勘探的重要测量手段之一,而其在裂缝或气层中的周波跳跃现象是该测井方法的典型响应特征。为了满足勘查技术与工程专业学生的理论及实践教学需要,本文通过设计并制作等比缩小的声波测井单发双收声系,利用天然岩石模型井... 声波测井是石油勘探的重要测量手段之一,而其在裂缝或气层中的周波跳跃现象是该测井方法的典型响应特征。为了满足勘查技术与工程专业学生的理论及实践教学需要,本文通过设计并制作等比缩小的声波测井单发双收声系,利用天然岩石模型井中的接缝视作裂缝,通过声系在模拟裂缝中的响应,实现补偿声波测井在教学实验中的周波跳跃现象。本实验有利于学生更好地掌握声波测井的工作原理及其在石油勘探开发过程中的应用,增强了学生的实践动手能力。 展开更多
关键词 声波测井 声波时差 纵波 裂缝 周波跳跃
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Application of four-component dipole shear reflection imaging to interpret the geological structure around a deviated well 被引量:11
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作者 Lee Sheng-Qing Chen Ming +2 位作者 Gu Xi-Hao su yuan-da Tang Xiao-Ming 《Applied Geophysics》 SCIE CSCD 2019年第3期291-301,395,共12页
Acoustic reflection imaging in deep water wells is a new application scope for offshore hydrocarbon exploration.Two-dimensional(2 D)geological structure images can be obtained away from a one-dimensional(1 D)borehole ... Acoustic reflection imaging in deep water wells is a new application scope for offshore hydrocarbon exploration.Two-dimensional(2 D)geological structure images can be obtained away from a one-dimensional(1 D)borehole using single-well acoustic reflection imaging.Based on the directivity of dipole source and four-component dipole data,one can achieve the azimuth detection and the three-dimensional(3 D)structural information around the wellbore can be obtained.We first perform matrix rotation on the field fourcomponent data.Then,a series of processing steps are applied to the rotated dipole data to obtain the reflector image.According to the above dipole shear-wave imaging principle,we used four-component cross-dipole logging data from a deviated well in the South China Sea to image geological structures within 50 m of a deviated well,which can delineate the structural configuration and determine its orientation.The configuration of near-borehole bedding boundaries and fault structures from shear-wave imaging results agrees with those from the Inline and Xline seismic profiles of the study area.In addition,the configuration and orientation of the fault structure images are consistent with regional stress maps and the results of the borehole stress anisotropy analysis.Furthermore,the dip azimuth of the bedding boundary images was determined using borehole wall resistivity data.Results of this study indicate that integrating borehole acoustic reflection with seismic imaging not only fills the gap between the two measurement scales but also accurately delineates geological structures in the borehole vicinity. 展开更多
关键词 four-component cross-dipole logging single-well shear-wave imaging seismicwell tie geological structure imaging fault imaging
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