Acknowledgement
The authors would like to express their gratitude to everyone who participated in the work of the Key Lab of Structure and Earthquake Rsistance in Xi'an University of Architecture and Technology for their support. Furthermore, we would like to thank the editors and reviewers for the helpful comments and revisions. This study was funded by the National Natural Science Foundation of China (Grant No. 51278399), National Natural Science Foundation of Inner Mongolia (No.2021bs05013), and the Science and Technology Project of Ministry of Housing and UrbanRural Development of China (No.2019-k-044).
References
- Ayalew, L, Yamagishi, H. and Reik, G. (2004), "Ground cracks in Ethiopian Rift Valley: facts and uncertainties", Eng. Geol., 75(3), 309-324. https://doi.org/10.1016/j.enggeo.2004.06.018.
- Arias, A. (1970), "A measure of earthquake intensity", (Ed., Hansen, R.J.), Seismic Design for Nuclear Power Plants, The M.I.T. Press, Cambridge, Britain: 438-489.
- Chang, J., Deng, Y.H., Xuan, Y., Yan, Z.F., Wu, W. and He, J. (2020), "The dynamic response of sites with earth fissures as revealed by microtremor analysis-A case study in the Linfen Basin, China", Soil Dyn. Earthq. Eng., 132(1-15). https://doi.org/10.1016/j.soildyn.2020.106076.
- Lee, C.F., Zhang, J.M. and Zhang, Y.X. (1996), "Evolution and origin of the ground fissures in Xian, China", Eng. Geol., 43(1), 45-55. https://doi.org/10.1016/0013-7952(95)00088-7.
- Cao, L.C., Zhang, J.J., Liu, F.C., Liu, Y., Wu, J.B. and Wang, Z.J. (2017), "Seismic response and failure mode of the complex site with tilting strongly weathered layer and local slopes", Chinese J. Rock Mech. Eng., 36(9), 2238-2250. (in Chinese) https://doi.org/10.13722/j.cnki.jrme.2017.0205.
- Dong, Y.F., Li, Y.M., Xiao, M.K. and Lai, M. (2008), "Analysis of earthquake ground motions using an improved Hilbert-Huang transform", Soil Dyn. Earthq. Eng., 28(1), 7-19. https://doi.org/10.1016/j.soildyn.2007.05.002.
- Dong, J., Zhong, S., Wang, H.L. and Wu, Z.H. (2020), "Dynamic response characteristics of crossing tunnels under heavy-haul train loads", Geomech. Eng., 20(2), 103-112. https://doi.org/10.12989/gae.2020.20.2.103.
- Holzer, T.L. (1984), "Ground failure induced by ground-water withdrawal from unconsolidated sediment", Rev. Eng. Geol., VI: 67-105. https://doi.org/10.1130/REG6-p67.
- Huang, T.L., Lou, M.L., Chen, H.P. and Wang, N.B. (2018), "An orthogonal Hilbert-Huang transform and its application in the spectral representation of earthquake accelerograms", Soil Dyn. Earthq. Eng., https://doi.org/10.1016/j.soildyn.2018.02.032.
- Harp, E.L. and Wilson, R.C. (1995), "Shaking intensity thresholds for rock falls and slides: Evidence from the whittier narrows and superstition hills earthquake strong motion records", Bull. Seismol. Soc. Am., 85(6), 1739-1757. https://doi.org/10.1785/BSSA0850061739.
- Hu, Z.P., Wang, Q.Y., Luo, L.J., Ma, S.L. and Liu, A.L. (2014), "Shaking table test on seismic response difference between primary secondary ground fissures on sites with y-shape ground fissure", China Civil Eng. J., 47(11), 98-107. (in Chinese) https://doi.org/10.15951/j.tmgcxb.2014.11.045.
- Kalogirou, E.E., Tsapanos, T.M., Karakostas, V.G., Marinos, V.P. and Chatzipetros, A. (2014), "Ground fissures in the area of Mavropigi Village (N. Greece): Seismotectonics or mining activity?", Acta Geophysica, 62(6), 1387-1412. https://doi.org/10.2478/s11600-014-0241-6.
- Liu, R.C., Yang, C.S., Wang, Q.L. and Ji, L.Y. (2021), "Possible mechanism of the formation of the Jichechang ground fissure in Datong, China, based on in-situ observations", Environ. Earth Sci., 80(14), 463. https://doi.org/10.1007/S12665-021-09715-2.
- Liu, N.N., Huang, Q.B., Fan, W., Ma, Y.J. and Peng, J.B. (2018), "Seismic responses of a metro tunnel in a ground fissure site", Geomech. Eng., 15(2), 775-781. https://doi.org/10.12989/gae.2018.15.2.775.
- Liu, N.N., Feng, X.Y., Huang, Q.B., Fan, W. and Peng, J.B. (2019), "Dynamic characteristics of a ground fissure site", Eng. Geol., 248, 220-229. https://doi.org/10.1016/j.enggeo.2018.12.003.
- Lee, C.J., Wei, Y.C. and Kuo, Y.C. (2012), "Boundary effects of a laminar container in centrifuge shaking table tests", Soil Dyn. Earthq. Eng., 34(1), 37-51. https://doi.org/10.1016/j.soildyn.2011.10.011.
- Lu, X.L. and Chen, Y.Q. (2001), "Study on dynamic similitude theory of soil-structure interaction system", Earthq. Eng. Eng. Vib., 21(3), 85-92. (in Chinese). https://doi.org/10.13197/j.eeev.2001.03.016.
- Peng, J.B., Sun, X.H., Lu, Q.Z., Meng, L.C., He, H.Q., Qiao, J.W. and Wang, F.Y. (2020), "Characteristics and mechanisms for origin of earth fissures in Fenwei basin, China", Eng. Geol., 266. https://doi.org/10.1016/j.enggeo.2019.105445.
- Pacheco-Martinez, J., Hernandez-Marin, M., Burbey, T.J., Gonzalez-Cervantes, N., Ortiz-Lozano, J.A., Zermeno-De-Leon, M.E. and Solis-Pinto, A. (2013), "Land subsidence and ground failure associated to groundwater exploitation in the Aguascalientes Valley, Mexico", Eng. Geol., 164(18), 172-186. https://doi.org/10.1016/j.enggeo.2013.06.015.
- Sancio, R.B., Bray, J.D., Stewart, J.P., Youd, T.L., Durgunoglu, H.T., Onalp, A., Seed, R.B., Christensen, C., Baturay, M.B. and Karadayilar, T. (2002), "Correlation between ground failure and soil conditions in Adapazari, Turkey", Soil Dyn. Earthq. Eng., 22(9-12), 1093-1102. https://doi.org/10.1016/S0267-7261(02)00135-5.
- Stacey, T.R. and Bell, F.G. (1999), "The influence of subsidence on planning and development in Johannesburg, South Africa", Environ. Eng. Geosci., 5(4), 373-388. https://doi.org/10.2113/gseegeosci.V.4.373.
- Wang, G.Y., You, G., Shi, B., Qiu, Z.L., Li, H.Y. and Tuck, M. (2010), "Earth fissures in Jiangsu Province, China and geological investigation of Hetang earth fissure", Environ. Earth Sci., 60(1), 35-43. https://doi.org/10.1007/s12665-009-0167-5.
- Wan, J.W., Li, B., Tan, C.X., Feng, C.J., Zhang, P. and Qi, B.S. (2020), "Characteristics and main causes of earth fissures in northeastern Beijing Plain, China", Bull. Eng. Geol. Environ., 79, 2919-2935. https://doi.org/10.1007/s10064-020-01731-z.
- Wang, F.Y., Peng, J.B., Chen, Z.X., Wang, Q.L., Meng, Z.J., Qiao, J.W. and Zhao, J.Y. (2020), "Development characteristics and mechanisms of damage-causing urban ground fissures in Datong City, China", Eng. Geol., 271, 1-10. https://doi.org/10.1016/j.enggeo.2020.105605.
- Wang, J.M. (2000), Theory of ground fissures hazard and its application, Shaanxi Science and Technology Press: Xi'an. (in Chinese)
- Wei, Y.C., Lee, C.J., Hung, W.Y. and Huei-Tsyr, C. (2010), "Application of Hilbert-Huang transform to characterize soil liquefaction and quay wall seismic responses modeled in centrifuge shaking-table tests", Rock Soil Mech., 30(7), 614-629. https://doi.org/10.1016/j.soildyn.2010.02.005.
- Wang, Q.Y., Hu, Z.P., Wang, R. and Luo, L.J. (2015), "Shaking table test study on seismic acceleration response of fissure sites under horizontal seismic action", J. China Railway Soc., 37(12), 121-128. (in Chinese).
- Xiong, Z.M., Chen, X., Zhang, C., Huo, X.P. and Zhuge, Y. (2018), "Shaking table tests of RC frame structure across the earth fissure under earthquake", Struct. Des. Tall Spec. Build., 27(14), 9-29. https://doi.org/10.1002/tal.1496.
- Xiong, Z.M., Zhang, C., Huo, X.P. and Ochoa, J.J. (2020), "Distributing disciplinarian of ground motion parameters on an earth fissures site during strong earthquakes", Earthq. Eng. Eng. Vib., 19(3), 597-610. https://link.springer.com/article/10.1007/s11803-020-0583-9.
- Xuan, Y., Deng, Y.H., He, J., Jiang C., Yan, Z.F. and Wu, W. (2021), "Microtremor-based analysis of the dynamic response characteristics of earth-fissured sites in the Datong basin, China", Earthq. Eng. Eng. Vib., 20(3), 567-582. https://doi.org/10.1007/s11803-021-2039-2.
- Zhang, J.M. (1990), Research on Ground Fissures in Xi'an City. Northwest University Press, Xi'an, (in Chinese).
- Zhu, C.Q., Cheng, H.L., Bao, Y.J., Chen, Z.Y. and Huang, Y. (2022), "Shaking table tests on the seismic response of slopes to near-fault ground Motion", Geomech. Eng., 29(2), 133-143. https://doi.org/10.12989/gae.2022.29.2.133