International Seismological CentreOnline Event Bibliography
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Search publication for ISC event 711732
ISC Event Agency Origin time Lat Lon Depth Magnitude Article_total Event code
711732 ISC 1976-07-27 19:42:55 39.63 118.10 12.2 Mw(GCMT) = 7.6 238 TANGSHAN1976Jiang, C., Li, Z., Bao, F., Zhang, J., Hao, T., Deng, Y., Xu, Y. and Huang, S., 2025. Seismotectonic characteristics of the 1976 M 7.8 Tangshan earthquake sequence revealed by high-resolution tomography, Tectonophysics, 907, 230721, DOI: 10.1016/j.tecto.2025.230721
Liu, S., Song, Z., Zhang, X., Chang, L., Wang, L., Chen, S., Xue, Y. and Wang, Y., 2024. A Review of the Mechanics of the Abnormal Geo-electrical Resistivity Preceding the 1976 Tangshan Earthquake Informed by Present Groundwater Conservation, Pure appl. Geophys., 181, 11, 3207-3230, DOI: 10.1007/s00024-024-03594-x
Morozov, V.N., Manevich, A.I. and Losev, I.V., 2024. Modeling of the Stress–Strain State and Coseismic Effects of the Epicentral Zone of the Tangshan Earthquake (Northeast China), Geotectonics, 58, 4, 428-441, DOI: 10.1134/s0016852124700304
Ma, Y., Wang, G., Shi, Z., Yan, R. and Yu, H., 2023. Groundwater level and temperature changes following the great Tangshan earthquake of 1976 near the epicenter, Geomatics Natural Hazards Risk, 14, 1, 2197103, DOI: 10.1080/19475705.2023.2197103
Yang, X., Shen, C.-Y., Zhu, Y.-Q., Yang, G.-L., Sun, K., Tan, H.-B. and Wang, J.-P., 2023. Study on gravity inversion of three-dimensional density structure of the crust in Tangshan Ms 7.8 earthquake area, Chinese J. Geophys., 66, 1, 183-196, DOI: 10.6038/cjg2022P0648
Cai, J., Chen, X., Dong, Z., Zhan, Y., Liu, Z., Cui, T. and Jiang, F., 2023. Three‐Dimensional Electrical Structure Beneath the Epicenter Zone and Seismogenic Setting of the 1976 Ms 7.8 Tangshan Earthquake, China, Geophys. Res. Lett., 50, 14, e2022GL102291, DOI: 10.1029/2022GL102291
Ma, Y.-C., Yan, R., Wang, G.-C., Yu, H.-Z., Li, M.-X., Ding, Z.-H. and Zhang, Z.-G., 2022. Groundwater level changes before the 1976 Tangshan Ms 7.8 earthquake and its relation with the earthquake nucleation process, Chinese J. Geophys., 65, 4, 1325-1335, DOI: 10.6038/cjg2022P0165
Chang, L., Wu, Y., Yang, B. and Jin, T., 2022. Three-dimensional Surface Deformation and Fault Movement Characteristics of Tangshan M7.8 Earthquake, Geomatics Information Sci. Wuhan Univ., 47, 6, 916-926, DOI: 10.13203/j.whugis20220159
Li, H., Tian, Y., Zhao, D. and Yan, D., 2022. Anatomy of large earthquakes in North China, J. Asian Earth Sci., 237, 105342, DOI: 10.1016/j.jseaes.2022.105342
Zhang, G., Ji, Y., Guo, H. and Hu, X., 2022. Complex fault geometry of the 1976 Ms 7.8 Tangshan earthquake source region in North China, Tectonophysics, 845, 229642, DOI: 10.1016/j.tecto.2022.229642
Liu, K., Li, Y., Nan, Y., Liu, B. and Wang, W., 2022. Detailed shallow structure of the seismogenic fault of the 1976 Ms 7.8 Tangshan earthquake, China, Front. Earth Sci., 10, 946972, DOI: 10.3389/feart.2022.946972
Chen, H., Qin, S., Xue, L., Yang, B. and Zhang, K., 2022. Universal precursor seismicity pattern before locked-segment rupture and evolutionary rule for landmark earthquakes, Geosci. Front., 13, 3, 101314, DOI: 10.1016/j.gsf.2021.101314
Mearns, E. and Sornette, D., 2021. A transfer fault complex to explain the geodynamics and faulting mechanisms of the 1976~M7.8 Tangshan earthquake China, J. Asian Earth Sci., 213, 104738, DOI: 10.1016/j.jseaes.2021.104738
Pararas-Carayannis, G., 2021. The Great Tangshan earthquake of 28 July 1976 in China - Analysis of tsunami generation in the Bohai Sea, Science of Tsunami Hazards, 40, 2, 122-145.
Liu, Y., Zhuang, J. and Jiang, C., 2021. Background seismicity before and after the 1976 Ms 7.8 Tangshan earthquake: Is its aftershock sequence still continuing?, Seismol. Res. Lett., 92, 2A, 877-885, DOI: 10.1785/0220200179
Chen, X.-Z., Li, Y.-E. and Chen, L.-J., 2021. Anomalies of the b value prior to the MS 7.8 Tangshan Earthquake of 1976, Chinese J. Geophys., 64, 10, 3612-3618, DOI: 10.6038/cjg2021O0476
Chen, Y., Liu, M. and Wang, H., 2021. Aftershocks and background seismicity in Tangshan and the rest of North China, J. geophys. Res.: Solid Earth, 126, 5, e2020JB021395, DOI: 10.1029/2020JB021395
Zhu, Y., Liu, F., Zhang, G. and Xu, Y., 2019. Development and prospect of mobile gravity monitoring and earthquake forecasting in recent ten years in China, Geodesy and Geodynamics, 10, 6, 485-491, DOI: 10.1016/j.geog.2019.05.006
Huang, Q., Meng, S., He, C., Dou, Y. and Zhang, Q., 2019. Rapid urban land expansion in earthquake-prone areas of China, Int. J. Disaster Risk Sci., 10, 1, 43-56, DOI: 10.1007/s13753-018-0207-4
Zhang, W., Zhang, Z., Fu, H., Li, Z. and Chen, X., 2019. Importance of spatial resolution in ground motion simulations with 3-D basins: An example using the Tangshan earthquake, Geophys. Res. Lett., 46, 21, 11915-11924, DOI: 10.1029/2019GL084815
Xu, X., Zhang, Z., Hu, F. and Chen, X., 2019. Dynamic rupture simulations of the 1920 Ms 8.5 Haiyuan earthquake in China, Bull. seism. Soc. Am., 109, 5, 2009-2020, DOI: 10.1785/0120190061
Bao, F., Li, Z., Tian, B., Wang, L. and Tu, G., 2019. Sediment thickness variations of the Tangshan fault zone in North China from a dense seismic array and microtremor survey, J. Asian Earth Sci., 185, 104045, DOI: 10.1016/j.jseaes.2019.104045
Li, C., Zhai, C., Kunnath, S. and Ji, D., 2018. Methodology for selection of the most damaging ground motions for nuclear power plant structures, Soil Dyn. Earthquake Eng., 116, 345-357, DOI: 10.1016/j.soildyn.2018.09.039
Tajima, F. and Hayashida, T., 2018. Earthquake early warning: what does 'seconds before a strong hit' mean?, Prog. Earth Planet. Sci., 5, 63, DOI: 10.1186/s40645-018-0221-6
Liu, D. and Duan, B., 2018. Scenario earthquake and ground‐motion simulations in North China: Effects of heterogeneous fault stress and 3D Basin structure, Bull. seism. Soc. Am., 108, 4, 2148-2169, DOI: 10.1785/0120170374
Franke, K.W., Lingwall, B.N., Youd, T.L., Blonquist, J. and Liang, J.H., 2018. Overestimation of liquefaction hazard in areas of low to moderate seismicity due to improper characterization of probabilistic seismic loading, Soil Dyn. Earthquake Eng., 116, 681-691, DOI: 10.1016/j.soildyn.2018.10.040
Xu, H., Sun, Y.-J. and Wu, Z.-H., 2018. The effect of lithospheric structure on the seismic deformation-taking the 1976 Tangshan earthquake and 2001 Kunlunshan earthquake as an example, Chinese J. Geophys., 61, 8, 3170-3184, DOI: 10.6038/cjg2018L0637
Wan, Y.-G., Wan, Y.-K., Jin, Z.-T., Sheng, S.-Z., Liu, Z.-C., Yang, F. and Feng, T., 2017. Rupture distribution of the 1976 Tangshan earthquake sequence inverted from geodetic data, Chinese J. Geophys., 60, 6, 583-601, DOI: 10.1002/cjg2.30070
Guo, H., Jiang, W. and Xie, X., 2017. Multiple faulting events revealed by trench analysis of the seismogenic structure of the 1976 Ms7.1 Luanxian earthquake, Tangshan region, China, J. Asian Earth Sci., 147, 424-438, DOI: 10.1016/j.jseaes.2017.06.004
Hui, G., Jiang, W.-L. and Xie, X.-S., 2016. Investigation on Zhaotan site in NW-trending ground fissure zone of 1976 Ms 7.8 Tangshan earthquake in Laoting-Luannan region, Acta seism. sin., 38, 4, 644-655.
Liu, C., Zhu, B. and Shi, Y., 2016. Lithospheric rheology and Moho upheaval control the generation mechanism of the intraplate earthquakes in the North China Basin, J. Asian Earth Sci., 121, 153-164, DOI: 10.1016/j.jseaes.2016.03.008
Wu, Y.-Q., Huang, L.-R., Chen, C.-Y., Zhu, S., Jin, T. and Liu, X.-Z., 2016. Coseismic and contemporary deformation features of the Ms 7.8 Tangshan earthquake in 1976, Acta seism. sin., 38, 4, 609-617.
Jiang, W., Wang, X., Tian, T., Zhang, J. and Wang, D., 2014. Detailed crustal structure of the North China and its implication for seismicity, J. Asian Earth Sci., 81, 53-64, DOI: 10.1016/j.jseaes.2013.11.021
Karakostas, V., Papadimitriou, E., Jin, X., Liu, Z., Paradisopoulou, P. and He, Z., 2013. Potential of future seismogenesis in Hebei Province (NE China) due to stress interactions between strong earthquakes, J. Asian Earth Sci., 75, 1-12, DOI: 10.1016/j.jseaes.2013.06.015
Li, Y., Du, J., Wang, X., Zhou, X., Xie, C. and Cui, Y., 2013. Spatial Variations of Soil Gas Geochemistry in the Tangshan Area of Northern China, Terr. Atmos. Ocean. Sci., 24, 3, 323-332, DOI: 10.3319/TAO.2012.11.26.01(TT)
Liu, M. and Wang, H., 2012. Roaming earthquakes in China highlight midcontinental hazards, EOS. Trans. Am. geophys. Un., 93, 45, 453, DOI: 10.1029/2012EO450001
Qiu, Z. and Shi, B., 2012. Aftershock duration of the 1976 Ms 7.8 Tangshan earthquake and implication for seismic hazard estimation, Acta seism. sin., 34, 4, 494-508.
Jiang, W., Zhang, J., Lu, X. and Lu, J., 2011. Crustal structure beneath Beijing and its surrounding regions derived from gravity data, Earthq. Science, 24, 3, 299-310, DOI: 10.1007/s11589-011-0792-4
Moss, R.E.S., Kayen, R.E., Tong, L.-Y., Liu, S.-Y., Cai, G.-J. and Wu, J., 2011. Retesting of liquefaction and nonliquefaction case histories from the 1976 Tangshan earthquake, J. Geotech. Geoenviron. Eng., 137, 4, 334-343, DOI: 10.1061/(ASCE)GT.1943-5606.0000406
Pu-xiong, L. and Xiao-jian, L., 2011. On the Causes of the Spatial Distribution Complexity of the 1976 Tangshan Earthquake Sequence, Earthquake, 31, 4, 1-14.
Lü, S. and Li, Y., 2011. Spatio-temporal epidemic type aftershock sequence model for Tangshan aftershock sequence, Earthq. Science, 24, 5, 401-408, DOI: 10.1007/s11589-011-0802-6
Lu, M.-Y., Zheng, W.-H., Chen, L.-W., Niu, A.-F., Zhan, Z.-M., Li, M., Kou, J.-X. and Fang, Z.-F., 2010. Discussion of dynamical stress effect on Tangshan Ms 7.8 earthquake, Chinese J. Geophys., 53, 9, 2110-2118, DOI: 10.3969/j.issn.0001-5733.2010.09.011
Chen-Xiao, D., Fu-Ren, X., Yang, Z. and Bao-Ping, S., 2010. 3D modeling of dynamic fault rupture and strong ground motion of the 1976 MS 7.8 Tangshan earthquake, Chinese J. Geophys., 53, 2, 290-304, DOI: 10.3969/j.issn.0001-5733.2010.02.007
Wang, J.-Y., Ping, J.-J., Zhang, S.-F. and Fan, X.-F., 2010. Discussion on relationship between atmospheric precipitation and earthquake, Dizhen Dizhi, 32, 4, 666-677.
Wan, Y.-G., Shen, Z.-K., Zeng, Y.-H., Sheng, S.-Z. and Xu, X.-F., 2008. Visco-elastic stress triggering model of Tangshan earthquake sequence, Acta seism. sin., 21, 6, 585-597, DOI: 10.1007/s11589-008-0585-6
Chen, J., Yang, X.-G. and Wang, J.-A., 2008. Preliminary study on psychological resilience of survivor after a catastrophe: A case study of 1976 Tangshan earthquake, J. Nat. Disasters 17, 1, 86-91.
Li, R.-S., Cui, X.-F., Diao, G.-L. and Zhang, H.-Y., 2008. Temporal and spatial variation characteristics of present stress field in the northern area of North China, Acta seism. sin., 21, 6, 573-584, DOI: 10.1007/s11589-008-0573-x
Wan, Y.-G., Shen, Z.-K., Diao, G.-L., Wang, F.-C., Hu, X.-L. and Sheng, S.-Z., 2008. An algorithm of fault parameter determination using distribution of small earthquakes and parameters of regional stress field and its application to Tangshan earthquake sequence, Chinese J. Geophys., 51, 2, 569-583, DOI: 10.1002/cjg2.1247
Li, L., Chen, Q.-F., Cheng, X. and Niu, F., 2007. Spatial clustering and repeating of seismic events observed along the 1976 Tangshan fault, north China, Geophys. Res. Lett., 34, 23, L23309, DOI: 10.1029/2007GL031594
Dong, H.-J., Li, X.-J., Du, M.-Q. and Yang, Y.-B., 2007. Study on problems related to earthquake disaster-caused psychological traumas, J. Nat. Disasters 16, 1, 153-158.
Ye, Y., 2006. Earthquake disaster risk management and implementation technology, J. Earthq. Eng. Eng. Vibrat. 26, 3, 11-17.
Jiang, W.-L., 2006. Discussion on seismogenic fault of the 1976 Tangshan earthquake, Dizhen Dizhi, 28, 2, 312-318.
Yu, H.-Z., Yin, X.-C., Zhu, Q.-Y. and Yan, Y.-D., 2006. State vector: A new approach to prediction of the failure of brittle heterogeneous media and large earthquakes, Pure appl. Geophys., 163, 11-12, 2561-2574, DOI: 10.1007/s00024-006-0145-8
Feder, T., 2006. Geological Hazards are Focus of Chinese Research Initiatives, Physics Today, 59, 12, 31-32, DOI: 10.1063/1.2435672
Jia, K., Wu, S., Wang, X., Ma, W. and Kang, H., 2006. Consideration on future development and actuality of high-rise building construction in Tangshan, J. Earthq. Eng. Eng. Vibrat. 26, 3, 25-27.
Kang, H. and Chen, G., 2006. Tangshan's reconstruction and seismic structural systems, J. Earthq. Eng. Eng. Vibrat. 26, 3, 22-24.
Xu, J., Liu, Y., Wang, S. and Su, Y., 2006. Forecasting the intensity of earthquake disaster of Guye District, Tangsan City, J. Earthq. Eng. Eng. Vibrat. 26, 3, 41-43.
Su, Y. and Zhang, Y., 2006. Research on distribution of disasters in Tangshan Earthquake, J. Earthq. Eng. Eng. Vibrat. 26, 3, 18-21.
Yang, W., 2006. Destruction to lifeline system in Tangshan Earthquake and its recovery, J. Earthq. Eng. Eng. Vibrat. 26, 3, 184-185.
Robinson, R. and Zhou, S., 2005. Stress Interactions within the Tangshan, China, Earthquake Sequence of 1976, Bull. seism. Soc. Am., 95, 6, 2501-2505, DOI: 10.1785/0120050091
Qiu, Z.-H., Ma, J. and Liu, G.-X., 2005. Discovery of the great fault of the Tangshan earthquake, Dizhen Dizhi, 27, 4, 669-677.
Qian, F.-Y. and Zhao, Y.-L., 2005. Study on geoelectric field method for short-term and impending earthquake prediction, Earthquake, 25, 2, 33-40.
Li, F.-M. and Chen, G.-X., 2005. Saturated sand liquefaction potential estimation method based on BP neural network, J. Nat. Disasters 14, 2, 108-114.
Qiu, Z., Ma, J. and Liu, G., 2005. A newly discovered major fault of the 1976 Tangshan earthquake in China, Episodes, 28, 3, .
Liu, J.-H., Shan, X.-J. and Yin, J.-Y., 2004. Automatic recognition of damaged town buildings caused by earthquake using remote sensing information: Taking the 2001 Bhuj, India, earthquake and the 1976 Tangshan, China, earthquake as examples, Acta seism. sin., 17, 6, 686-696, DOI: 10.1007/s11589-004-0008-2
Ding, Z., Chen, Y.T. and Panza, G.F., 2004. Estimation of site effects in Beijing City, Pure appl. Geophys., 161, 5-6, 1107-1123, DOI: 10.1007/s00024-003-2495-9
Ding, Z., Romanelli, F., Chen, Y.T. and Panza, G.F., 2004. Realistic modeling of seismic wave ground motion in Beijing City, Pure appl. Geophys., 161, 5-6, 1093-1106, DOI: 10.1007/s00024-003-2498-6
Huang, J. and Zhao, D., 2004. Crustal heterogeneity and seismotectonics of the region around Beijing, China, Tectonophysics, 385, 1-4, 159-180, DOI: 10.1016/j.tecto.2004.04.024
Fu, Z., Liu, J. and Liu, G., 2004. On the long-term seismic hazard analysis in the Zhangjiakou-Penglai seismotectonic zone, China, Tectonophysics, 390, 1-4, 75-83, DOI: 10.1016/j.tecto.2004.03.021
Chen, Z., Bai, W., Lin, B., Wang, X., Xu, G., Zhang, R. and Huang, W., 2003. Numerical simulations for rupture processes of a series of strong earthquakes (Ms> 7) in north China since 1966, Chinese J. Geophys., 46, 3, 535-545, DOI: 10.1002/cjg2.3371
Zhao, S. and Takemoto, S., 1999. Aseismic fault movement before the 1976 Tangshan earthquake detected by levelling: implications for pre‐seismic stress localization?, Geophys. J. Int., 136, 1, 68-82, DOI: 10.1046/j.1365-246X.1999.00703.x
Zhou, R., Guo, S. and He, W., 1998. A study on the rupturing model of the double-main shock in the Longlin-Lancang fault zone, Yunnan, Dizhen Dizhi, 20, 3, 261-268.
Alekseev, A.S., Avdeev, A.V., Goruynov, E.V. and Skazka, V.V., 1998. TangShang earthquake: analysis of the data of electromagnetic monitoring, Bull. Novosibirsk Computing Center 4, 1-13.
Huang, B.-S. and Tein Yeh, Y., 1997. The fault ruptures of the 1976 Tangshan earthquake sequence inferred from coseismic crustal deformation, Bull. seism. Soc. Am., 87, 4, 1046-1057, DOI: 10.1785/BSSA0870041046
Ekström, G. and Nettles, M., 1997. Calibration of the HGLP seismograph network and centroid-moment tensor analysis of significant earthquakes of 1976, Phys. Earth planet. Interiors, 101, 3–4, 219-243, DOI: 10.1016/S0031-9201(97)00002-2
Mei, S-R., 1995. On the physical model of earthquake precursor fields and the mechanism of precursor`s time-space distribution - origin and evidences of the strong body earthquake-generating model, Acta seism. sin., 8, 3, 337-349, DOI: 10.1007/BF02650562
Zhou, H. and Ding, R., 1995. Study of the characteristics of crustal stress field in East China by inversion of nodal-plane data, Tectonophysics, 245, 1-2, 53-59, DOI: 10.1016/0040-1951(94)00177-B
Yang, G-H., Gui, K-C., Gong, Y-M., Yang, C.-H., Han, Y.-P. and Sun, D.-P., 1995. Study on the pattern and mode of vertical crustal deformation during the seismogenic process of intraplate strong earthquakes, Acta seism. sin., 8, 2, 195-204, DOI: 10.1007/BF02650482
Zhang, G-M., Geng, L-M., Zhang, Y-X. and Shi, Y.-L., 1995. Seismogenic model of earthquakes in groups in tectonic block and analysis for some features of earthquake precursory field, Acta seism. sin., 8, 1, 1-12, DOI: 10.1007/BF02650991
Mao, T-E., Wang, T-C., Yao, J-L., Lu, J. and Zhang, H.-K., 1995. The variations of the degree of ground resistivity anisotropy during the Tangshan earthquake, Acta seism. sin., 8, 4, 621-627, DOI: 10.1007/BF02650530
Zeng, R-S., Wang, C-Y. and Zhang, D-N., 1995. On the dynamics of extensional basin, Pure appl. Geophys., 145, 3-4, 579-603, DOI: 10.1007/BF00879590
Huan, W-L., Zhang, X-D. and Song, Z-Y., 1995. Characteristics of tectonic deformation field about strike-slip earthquake-generating structure in the Chinese mainland, Acta seism. sin., 8, 2, 175-184, DOI: 10.1007/BF02650480
Hao, X-S., Seo, K. and Samano, T., 1994. Low damage anomaly of the 1976 Tangshan earthquake: an analysis based on the explosion ground motions, Bull. seism. Soc. Am., 84, 4, 1018-1027, DOI: 10.1785/BSSA0840041018
Zhang, G-M., Zhang, Y-X. and Shi, Y-L., 1994. Studies of the numerical simulation on seismic precursory complexity, J. Earthq. Predict. Res. 3, 1, 1-18.
Sun, X-Y., Liu, J-Y. and Wang, R., 1994. The simulation of coseismic and postseismic crustal deformation due to Tangshan earthquake in 1976, Acta geophys. sin. 37, 1, 45-55.
Liu, C-H., Liu, Y-G. and Zhang, J., 1994. Self-affine fractal features of earthquake time series before and after moderate earthquakes, Acta seism. sin., 7, 3, 447-456, DOI: 10.1007/BF02650683
Zhang, Z-S., 1994. On earthquake prediction by crustal deformation monitoring method in China, J. Earthq. Predict. Res. 3, 1, 79-98.
Xue, S-Z., Wen, X-M., Dong, Y-D., Liang, Z.-B., Zhang, Q.-Y. and Zhao, H.-Y., 1994. A new method for earthquake prediction by earth-resistivity measurements, Acta seism. sin., 7, 2, 291-299.
Li, D-S., Zheng, Z-B. and Wang, B-H., 1994. Research into the multifractal of earthquake spatial distribution, Tectonophysics, 233, 1-2, 91-97, DOI: 10.1016/0040-1951(94)90222-4
Zhao, Y. and Qian, F., 1994. Geoelectric precursors to strong earthquakes in China, Tectonophysics, 233, 1-2, 99-113, DOI: 10.1016/0040-1951(94)90223-2
Chen, P-F., 1994. Investigations of the seismomagnetic effect in the geomagnetic diurnal variations, Acta seism. sin., 7, 3, 457-464, DOI: 10.1007/BF02650684
Zhao, S., 1994. Theory and parameter-optimization method for inversion of the tectonophysical model, Geophys. J. Int., 117, 3, 665-676, DOI: 10.1111/j.1365-246X.1994.tb02461.x
Zhao, H-Y., 1994. The pattern characteristics of the tendency variations of earth resistivity and its relation to earthquakes, Acta seism. sin., 7, 3, 465-474, DOI: 10.1007/BF02650685
Liu, X-H. and Zhou, Y-S., 1994. The mutation sequence of earth resistivity and earthquakes, Acta seism. sin., 7, 31-40.
Chen, P-S., Xiao, L., Bai, T-X. and Wang, X.-L., 1994. The environment shear stress field for the 1976 Tangshan earthquake sequence, Acta seism. sin., 7, 4, 549-557, DOI: 10.1007/BF02650740
Li, X-C., 1993. Effects of preseismic fault slip on the occurrence of 1976 Tangshan event, Acta seism. sin., 6, 1, 123-128.
Deng, Z-H. and Ma, J., 1993. On nonlinear characteristics of earthquake precursor time with reference to Haicheng and Tangshan earthquakes, Seismology Geol., 15, 3, 213-219.
Dan, K., Ishii, T. and Ebihara, M., 1993. Estimation of strong ground motions in meizoseismal region of the 1976 Tangshan, China, earthquake, Bull. seism. Soc. Am., 83, 6, 1756-1777, DOI: 10.1785/BSSA0830061756
Du, X-B., Zhao, H-Y. and Chen, B-Z., 1993. On the relation of the imminent sudden change in earth resistivity to the active fault and earthquake generating stress field, Acta seism. sin., 6, 3, 663-673, DOI: 10.1007/BF02650405
Wang, L-Q. and Li, S-Y., 1993. A probable mechanism of the water level subsidence in wells as a precursor of an earthquake event, Acta seism. sin., 6, 3, 685-696, DOI: 10.1007/BF02650407
Shaorong, Z., 1993. Inversion of Dynamic Geodetic Data and Its Application in the Research of Seismic Non-uniform Rupture, Geomatics Information Sci. Wuhan Univ., 18, 3, 41-48.
Rikitake, T., 1993. Review of `Advances in geophysical research, Vol. 1` edited by Institute of Geophysics, State Seismological Bureau, Tectonophysics, 217, 3-4, 355-356, DOI: 10.1016/0040-1951(93)90017-E
Park, S.K., Johnston, M.J.S., Madden, T.R., Morgan, F.D. and Morrison, H.F., 1993. Electromagnetic precursors to earthquakes in the ULF band: a review of observations and mechanisms, Rev. Geophys., 31, 2, 117-132, DOI: 10.1029/93RG00820
Cheng, J-Y. and Yang, Z., 1993. Regression analysis of mortality and the ratio of collapsing houses by Tangshan earthquake, Seismology Geol., 15, 1, 82-87.
Zhu, L-R., Zhou, S-Y., Wang, H-T., Bai, C.-Y. and Gong, Y.-Q., 1993. Research on seismic information dimension, Acta seism. sin., 6, 1, 19-27.
Wang, X-D. and Guan, H-P., 1993. Relationship between earth resistivity precursors of an earthquake and geological environment of an observatory, Acta seism. sin., 6, 1, 181-189.
Zhang, C., Chen, L-W. and Tang, W-N., 1993. Modelling on factors controlling instable behavior of the 1976 Tangshan earthquake, Acta seism. sin., 6, 1, 217-222.
Zheng, T-Y. and Yao, Z-X., 1993. Source process study of the Tangshan earthquake using the near-field records, Acta geophys. sin. 36, 2, 174-184.
Yoshida, A. and Furuya, I., 1992. Case Study on Earthquake Precursory Phenomena, Zisin, 45, 1, 71-82, DOI: 10.4294/zisin1948.45.1_71
Sun, Y., Zheng, S-H. and Mei, S-R., 1992. Inversion of source parameters and attenuation of the Tangshan aftershocks, Acta seism. sin., 5, 3, 481-492, DOI: 10.1007/BF02650543
Zhang, X., Jiao, T-H. and Jiang, P-H., 1992. A primary study of magnetic crystal line basement interface in Tang-shan earthquake area, Seismology Geol., 14, 1, 47-54.
1992. Nuclear earthquakes, Geogrl Mag., Lond. 64, 11, 39.
Qiu, Z-H. and Zhang, B-H., 1992. Study of some long-term anomalous changes prior to Tangshan earthquake with respect to tectonic cave-in, Seismology Geol., 14, 1, 55-60.
Zhang, B-C., Wu, H-M., Liu, C-Y., Han, F. and Ma, Y., 1992. The effect of stress on pore pressure in rocks and the mechanism of water table anomaly before earthquakes, Acta seism. sin., 5, 1, 153-159, DOI: 10.1007/BF02650912
Zhang, R-F. and Song, Y-H., 1992. Application of system science to the study of the relation between the fault deformation network in the Beijing-Tianjin area and earthquakes, Acta seism. sin., 5, 2, 315-323, DOI: 10.1007/BF02651698
Zhang, C. and Chen, L-W., 1992. Comprehensive study on stability of deep crust and unstable behavior of earthquake source by both failure mechanism and frictional sliding mechanism, Acta seism. sin., 5, 3, 503-514, DOI: 10.1007/BF02650545
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