Page 152 - 201901
P. 152
148 2019 年 1 月
[15] Wang J, Hu H S, Guan W. Experimental measurements of
seismoelectric signals in borehole models[J]. Geophysical
参 考 文 献
Journal International, 2015, 203(3): 1937–1945.
[16] 王军, 关威, 胡恒山, 等. 动电测井实验研究 II: 伴随动电场和
[1] Ivanov A G. Effect of electrization of earth layers by 界面动电场 [J]. 地球物理学报, 2016, 59(1): 381–390.
elastic waves passing through them[J]. Doklady Akademii Wang Jun, Guan Wei, Hu Hengshan, et al. Electrokinetic
Nauk SSSR, 1939, 24(1): 42–45. experimental studies in borehole model II: localized and
[2] Pride S. Governing equations for the coupled electromag- radiated seismoelectric field[J]. Chinese Journal of Geo-
netics and acoustics of porous media[J]. Physical Review physics, 2016, 59(1): 381–390.
B, 1994, 50(21): 15678. [17] 王军, 胡恒山, 关威, 等. 地层波速的电缆和随钻动电测井实
[3] Jouniaux L, Zyserman F. A review on electrokinetically 验研究 [J]. 地球物理学报, 2017, 60(2): 862–872.
induced seismo-electrics, electro-seismics, and seismo-
Wang Jun, Hu Hengshan, Guan Wei, et al. Electrokinetic
magnetics for earth sciences[J]. Solid Earth, 2016, 7(1): measurement of formation velocities with wireline seismo-
249–284. electric logging and seismoelectric logging while drilling[J].
[4] Zyserman F I, Jouniaux L, Warden S, et al. Borehole Chinese Journal of Geophysics, 2017, 60(2): 862–872.
seismoelectric logging using a shear-wave source: possible
[18] Gao Y X, Hu H S. Seismoelectromagnetic waves radi-
application to CO 2 disposal?[J]. International Journal of
ated by a double couple source in a saturated porous
Greenhouse Gas Control, 2015, 33: 89–102.
medium[J]. Geophysical Journal International, 2010,
[5] Zyserman F I, Monachesi L B, Jouniaux L. Dependence
181(2): 873–896.
of shear wave seismoelectrics on soil textures: a numerical
[19] Hu H S, Gao Y X. Electromagnetic field generated by a
study in the vadose zone[J]. Geophysical Journal Interna-
finite fault due to electrokinetic effect[J]. Journal of Geo-
tional, 2016, 208(2): 918–935.
physical Research: Solid Earth, 2011, 116: B08302.
[6] Zhu Z, Haartsen M W, Toksöz M N. Experimental stud-
[20] Frenkel J. On the theory of seismic and seismoelectric phe-
ies of electrokinetic conversions in fluid-saturated borehole
nomena in a moist soil[J]. Journal of Engineering Mechan-
models[J]. Geophysics, 1999, 64(5): 1349–1356.
ics, 2005, 131(9): 879–887.
[7] Hu H S, Liu J Q. Simulation of the converted electric field
[21] Biot M A. Theory of propagation of elastic waves in a
during acoustoelectric logging[C]. SEG Technical Program
fluid-saturated porous solid. I. Low-frequency range[J].
Expanded Abstracts, Society of Exploration Geophysi-
The Journal of the acoustical Society of America, 1956,
cists, 2002: 348–351.
28(2): 168–178.
[8] Guan W, Shi P, Hu H S. Contributions of poroelastic-wave
[22] Biot M A. Theory of propagation of elastic waves in
potentials to seismoelectromagnetic wavefields and valid-
a fluid-saturated porous solid. II. Higher-frequency
ity of the quasi-static calculation: a view from a borehole
range[J]. The Journal of the acoustical Society of America,
model[J]. Geophysical Journal International, 2018, 212(1):
1956, 28(2): 178–191.
458–475.
[23] Thompson R R. The seismic electric effect[J]. Geophysics,
[9] 胡恒山. 井中声源激发时孔隙地层中的弹性波及其诱导电磁
1936, 1(3): 327–335.
场 [R]. 哈尔滨: 哈尔滨工业大学博士后工作报告, 2002.
[10] 胡恒山. 孔隙地层井壁上的声波首波及其诱导电磁场的原 [24] Jardani A, Revil A, Slob E, et al. Stochastic joint in-
version of 2D seismic and seismoelectric signals in linear
因 [J]. 物理学报, 2003, 52(8): 1954–1959.
poroelastic materials: a numerical investigation[J]. Geo-
Hu Hengshan. Acoustic head wave on the borehole wall in
physics, 2010, 75(1): N19–N31.
a porous formation and the causes for its accompanying
electromagnetic field[J]. Acta Physica Sinica, 2003, 52(8): [25] Revil A, Mahardika H. Coupled hydromechanical and
1954–1959. electromagnetic disturbances in unsaturated porous mate-
[11] Hu H S, Guan W, Wang K X. The electromagnetic field rials[J]. Water Resource Research, 2013, 49(2): 744–766.
accompanying the acoustic head wave and the radiating [26] Revil A, Kessouri P, Torres-Verdín C. Electrical con-
electromagnetic wave during acousto-electromagnetic well ductivity, induced polarization, and permeability of
logging[C]. Proceedings of the third Biot Conference on the Fontainebleau sandstone[J]. Geophysics, 2014, 79(5):
Poromechanics, Oklahoma, USA, 2005: 593–599. D301–D318.
[12] Guan W, Hu H S, Zheng X B. Theoretical simulation of [27] Biot M A. Mechanics of deformation and acoustic prop-
the multipole seismoelectric logging while drilling[J]. Geo- agation in porous media[J]. Journal of Applied Physics,
physical Journal International, 2013, 195(2): 1239–1250. 1962, 33(4): 1482–1498.
[13] Zheng X B, Hu H S, Guan W, et al. Simulation of the [28] Wang J, Hu H S, Guan W, et al. Electrokinetic exper-
borehole quasistatic electric field excited by the acoustic imental study on saturated rock samples: zeta potential
wave during logging while drilling due to electrokinetic and surface conductance[J]. Geophysical Journal Interna-
effect[J]. Geophysics, 2015, 80(5): D417–D427. tional, 2015, 201(2): 869–877.
[14] 杨玉峰. 随钻声波测井时域有限差分模拟与钻铤波传播特性 [29] Yin C G, Hu H S, Yu C H, et al. Successive measurements
研究 [D]. 哈尔滨: 哈尔滨工业大学, 2014. of streaming potential and electroosmotic pressure with