井周界面电磁散射探测数值模拟

依据电磁散射理论,模拟电磁散射对地层界面响应,探讨电磁波测井"向前看"能力。根据电磁场分布特征,将接收天线对称分布在发射天线两侧,对比接收天线信号差异,获取井旁界面电磁散射信号;在不同供电频率、天线源距、电阻率对比度条件下,模拟天线分量信号的响应特征,分析其与地层界面关系及敏感性。结果表明:与现有测量方法相比,在更小的源距条件下,该方法利用电磁散射信号探测井旁界面,达到了更优的探测效果;仪器信号强度和探测范围受界面两侧电阻率及其差异的影响,并随着电阻率差异的增大而增大;将同轴和倾斜天线幅度差信号交会,根据交会数据落点位置,确定界面位置简单有效。...

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Published in中国石油大学学报(自然科学版) Vol. 42; no. 1; pp. 67 - 72
Main Author 邓少贵;张盼;王正楷;袁习勇
Format Journal Article
LanguageChinese
Published 中国石油大学地球科学与技术学院,山东青岛,266580 2018
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Abstract 依据电磁散射理论,模拟电磁散射对地层界面响应,探讨电磁波测井"向前看"能力。根据电磁场分布特征,将接收天线对称分布在发射天线两侧,对比接收天线信号差异,获取井旁界面电磁散射信号;在不同供电频率、天线源距、电阻率对比度条件下,模拟天线分量信号的响应特征,分析其与地层界面关系及敏感性。结果表明:与现有测量方法相比,在更小的源距条件下,该方法利用电磁散射信号探测井旁界面,达到了更优的探测效果;仪器信号强度和探测范围受界面两侧电阻率及其差异的影响,并随着电阻率差异的增大而增大;将同轴和倾斜天线幅度差信号交会,根据交会数据落点位置,确定界面位置简单有效。
AbstractList 依据电磁散射理论,模拟电磁散射对地层界面响应,探讨电磁波测井"向前看"能力。根据电磁场分布特征,将接收天线对称分布在发射天线两侧,对比接收天线信号差异,获取井旁界面电磁散射信号;在不同供电频率、天线源距、电阻率对比度条件下,模拟天线分量信号的响应特征,分析其与地层界面关系及敏感性。结果表明:与现有测量方法相比,在更小的源距条件下,该方法利用电磁散射信号探测井旁界面,达到了更优的探测效果;仪器信号强度和探测范围受界面两侧电阻率及其差异的影响,并随着电阻率差异的增大而增大;将同轴和倾斜天线幅度差信号交会,根据交会数据落点位置,确定界面位置简单有效。
P631.8; 依据电磁散射理论,模拟电磁散射对地层界面响应,探讨电磁波测井"向前看"能力.根据电磁场分布特征,将接收天线对称分布在发射天线两侧,对比接收天线信号差异,获取井旁界面电磁散射信号;在不同供电频率、天线源距、电阻率对比度条件下,模拟天线分量信号的响应特征,分析其与地层界面关系及敏感性.结果表明:与现有测量方法相比,在更小的源距条件下,该方法利用电磁散射信号探测井旁界面,达到了更优的探测效果;仪器信号强度和探测范围受界面两侧电阻率及其差异的影响,并随着电阻率差异的增大而增大;将同轴和倾斜天线幅度差信号交会,根据交会数据落点位置,确定界面位置简单有效.
Abstract_FL The response to the interface is numerically simulated based on the electromagnetic scattering theory. Putting sym-metrically the receiving antenna on two sides of the transmitting antenna,the scattered signal off the interface can be reflected by the difference of receiving signals. The electromagnetic responses to the bed boundary were analyzed at different frequen-cies,distances of antenna and resistivity contrast ratios of two sides'formations. The results show that electromagnetic scat-tering measurements can reach deeper sensitivity than most current tools. The contrast ratio of the formation resistivity deter-mines the signal strength. The sensitivity depth becomes larger with increasing resistivity contrasts. A cross plot can be drawn to show the signal magnitude difference between the coaxial and tilt antenna,which can be easily used to determine the posi-tion of formation interfaces.
Author 邓少贵;张盼;王正楷;袁习勇
AuthorAffiliation 中国石油大学地球科学与技术学院,山东青岛266580
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Author_FL ZHANG Pan
YUAN Xiyong
WANG Zhengkai
DENG Shaogui
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DocumentTitleAlternate Numerical simulation of electromagnetic scattering of interface around borehole
DocumentTitle_FL Numerical simulation of electromagnetic scattering of interface around borehole
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Issue 1
Keywords 幅度差
symmetrical antenna struc-ture
electromagnetic logging
电磁波测井
地层界面
对称分布
formation boundary
detection depth
探测深度
magnitude difference
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Notes electromagnetic logging; formation boundary; magnitude difference; detection depth; symmetrical antenna struc-ture
The response to the interface is numerically simulated based on the electromagnetic scattering theory.Putting symmetrically the receiving antenna on two sides of the transmitting antenna,the scattered signal off the interface can be reflected by the difference of receiving signals.The electromagnetic responses to the bed boundary were analyzed at different frequencies,distances of antenna and resistivity contrast ratios of two sides formations.The results show that electromagnetic scattering measurements can reach deeper sensitivity than most current tools.The contrast ratio of the formation resistivity determines the signal strength.The sensitivity depth becomes larger with increasing resistivity contrasts.A cross plot can be drawn to show the signal magnitude difference between the coaxial and tilt antenna,which can be easily used to determine the position of formation interfaces.
DENG Shaogui,
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PublicationTitleAlternate Journal of China University of Petroleum
PublicationTitle_FL Journal of China University of Petroleum(Edition of Natural Science)
PublicationYear 2018
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SubjectTerms 电磁波测井;地层界面;幅度差;探测深度;对称分布
Title 井周界面电磁散射探测数值模拟
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