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机构地区:[1]哈尔滨工业大学航天科学与力学系,哈尔滨150001
出 处:《力学学报》2004年第4期407-413,共7页Chinese Journal of Theoretical and Applied Mechanics
基 金:国家自然科学基金(10272038);哈尔滨工业大学跨学科交叉性研究基金(HIT.MD200204)~~
摘 要:声电效应测井过程中,当充流体井中发射的声波传播至井外时,在孔隙地层中引起含带电离子的孔隙流体相对于固体骨架流动,导致电磁场,在忽略转换电磁场对声场影响的条件下,先采用Biot-Rosenbaum模型计算孔隙地层中的声场,再计算声波诱导的电场和磁场。计算结果表明,有伴随纵波波群和横波波群的电磁场、有伴随斯通利波的电磁场,还有微弱的临界折射电磁波。计算还表明:接收器偏离井轴越远,电场和磁场的强度越大;在井壁处,磁场强度的波形与轴向电场强度的波形相似。During acousto-electric logging, the acoustic wave excited by a point acoustic source in a fluidfilled borehole propagates into the fluid-saturated porous medium and causes relative motion between the charge-bearing pore fluid and the skeleton, inducing electromagnetic field. To simulate the logging response, a numerical full-waveform simulation method is proposed. The acoustic field is taken as uninfluenced by the converted electromagnetic field, and is solved separately. The electric field is taken as quasi-steady. The full Biot-Rosenbaum model is adopted to obtain expressions for the acoustic field around the borehole. These expressions are then used to formulate the converted electric and magnetic fields in and out of the borehole. Calculations show there are electric and magnetic fields that accompany the compressional, the shear and the Stoneley waves. And there is a critically refracted electromagnetic wave, which travels along the borehole wall. The amplitude of this wave is very weak in the full waveform. Both the axial and the radial components of the electric field increase when the receiver is placed farther off the borehole axis. On the borehole wall, the shape of the waveform of magnetic field is similar to that of the axial electric field.
关 键 词:孔隙介质 弹性波 电磁场 测井 接收位置 声电效应 地质探测
分 类 号:P623[天文地球—地质矿产勘探]
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