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Geophysics: Li, G., P.F. Zhang, and J.S. Sun, 2017. A new model describing the interaction between fluid pressure wave in pores and P wave in rock matrix. Geophysics, accepted. (Corresponding author) Gao, G., G. Kang, G. Li, C. Bai, and Y. Wu, 2016. An analysis of crustal magnetic anomaly and Curie surface in west Himalayan syntaxis and adjacent area, Acta Geodaetica et Geophysica, doi: 10.1007/s40328-016-0179-z. Hu, J., H. Yang, G. Li, and H. Peng, 2015. A review on the analysis of the crustal and upper mantle structure using receiver functions. Journal of Asian Earth Sciences, 111: 589-603, doi:10.1016/j.jseaes.2015.06.007. Hu, J., H. Yang, G. Li, and H. Peng, 2014. Seismic upper mantle discontinuities beneath Southeast Tibet and geodynamic implications. Gondwana Research, 28: 1032-1047, doi: 10.1016/j.gr.2014.08.016. Gao, G., G. Kang, G. Li, and C. Bai, 2015. Crustal magnetic anomaly in the Ordos region and its tectonic implications. Journal of Asian Earth Sciences, 109: 63-73, doi: 10.1016/j.jseaes.2015.04.033. Gao, G., G. Kang, G. Li, and C. Bai, 2015. Crustal magnetic anomaly and Curie surface beneath Tarim Basin, China, and its adjacent area. Canadian Journal of Earth Sciences, 52: 357–367, doi: 10.1139/cjes-2014-0204. Gao, G., G. Kang, C. Bai, and G. Li, 2013. Distribution of the crustal magnetic anomaly and geological structure in Xinjiang, China. Journal of Asian Earth Sciences, 77: 12-20, doi: 10.1016/j.jseaes.2013.08.014. Yang, H., J. Hu, Y. Hu, Y. Duan, and G. Li, 2013. Crustal structure in the Tengchong volcanic area and position of the magma chambers. Journal of Asian Earth Sciences, 73: 48-56, doi: 10.1016/j.jseaes.2013.04.027. (Corresponding author) Hu, J., H. Yang, G. Li, and L. Wen, 2013. Seismic signature of the Mantle Transition Zone beneath eastern Tibet and Sichuan Basin. Journal of Asian Earth Sciences, 62: 606-615, doi: 10.1016/j.jseaes.2012.11.009. (Corresponding author) Hu, J., H. Yang, X. Xu, L. Wen, and G. Li, 2012. Lithospheric structure and crust mantle decoupling in the southeast edge of the Tibetan Plateau. Gondwana Research, 22(3-4): 1060-1067, doi:10.1016/j.gr.2012.01.003. (Corresponding author) Yang, H., J. Hu, G. Li, H. Zhao, and L. Wen, 2011. Analysis of the crustal thickness and Poisson’s ratio in eastern Tibet from teleseismic receiver functions. Geophysical Journal International, 186: 1380-1388, doi:10.1111/j.1365-246X.2011.05118.x. (Corresponding author) Hu, J., X. Xu, H. Yang, L. Wen, and G. Li, 2011. S receiver function analysis of the crustal and lithospheric structures beneath eastern Tibet. Earth and Planetary Science Letters, 306: 77-85, doi:10.1016/j.epsl.2011.03.034. (Corresponding author) Li, G., J. Hu, H. Yang, H. Zhao, and L. Cong, 2009. Lg coda Q variation across the Myanmar Arc and its neighboring regions, Pure and Applied Geophysics, 166:1937-1948, doi: 10.1007/s00024-009-0459-4. (Corresponding author) Jin, Y., M. Yang, W. Zhao, X. Shi, W. Xu, and G. Li, 1999. Inversion of 3-D crustal P-wave velocity structure in Ningxia and its neighborhood by using direct, reflected and refracted waves, Acta Seismologica Sinica, 12(4): 436-446, doi:10.1007/s11589-999-0084-4. -------------------------------------------------------------------------------------------- Hydrogeology: Li, G., N. Goldscheider, and M. S. Field, 2016. Modeling karst spring hydrograph recession based on head drop at sinkholes. Journal of Hydrology, 542: 820–827, doi: 10.1016/j.jhydrol.2016.09.052. Li, G., and M. S. Field, 2016. Solute migration from the aquifer matrix into a solution conduit and the reverse. Ground Water, 54(5): 699–708, doi: 10.1111/gwat.12416. Liu, H., and G. Li, 2015. A simple diagnostic model to estimate total sink recharge based on dye tracing experiments. Acta Carsologica, 44(2): 227-235, doi: 10.3986/ac.v44i2.1628. (Corresponding author) Li, G., and H. Liu, 2015. Shear flow interaction between a tube and the surrounding matrix. Transport in Porous Media, 108(2): 279-288, doi: 10.1007/s11242-015-0475-z. (Corresponding author) Li, G., and M. S. Field, 2014. A mathematical model for simulating spring discharge and estimating sinkhole porosity in a karst watershed. Grundwasser, 19(1): 51-60, doi: 10.1007/s00767-013-0243-3. Li, G., and H. Liu, 2014. An advection-dilution model to estimate conduit geometry and flow. Acta Carsologica, 43(1): 89-99, doi: 10.3986/ac.v43i1.595. (Corresponding author) Li, G., Y. Cheng, and B. Zhao, 2012. Analysis of the effect of the Beavers-Joseph interface condition on flow in karst conduits. Journal of the American Water Resources Association, 48(6): 1233-1240, doi: 10.1111/j.1752-1688.2012.00683.x. (Corresponding author) Li, G., 2012. Calculation of karst conduit flow using dye tracing experiments. Transport in Porous Media, 95(3): 551-562, doi: 10.1007/s11242-012-0061-6. Li, G., 2011. Spatially varying dispersion to model breakthrough curves. Ground Water, 49(4): 584-592, doi: 10.1111/j.1745-6584.2010.00777.x. Li, G., and D. E. Loper, 2011. Transport, dilution, and dispersion of contaminant in a leaky karst conduit. Transport in Porous Media, 88(1): 31-43, doi:10.1007/s11242-011-9721-1. (Corresponding author) Field, M. S., and G. Li, 2011. Inversion for the input history of a dye tracing experiment. Journal of Cave and Karst Studies, 73(1):16-20, doi: 10.4311/jcks2010es0143. (Corresponding author) Li, G., Y. Shang, and J. Gao, 2010. Scale analysis of the significance of dispersion in mixing-transport in conduits. Journal of Cave and Karst Studies, 72(3):150-155, doi:10.4311/jcks2009es0106. (Corresponding author) Li, G., 2009. Analytical solution of advective mixing in a conduit, Ground Water 47(5):714-722, doi: 10.1111/j.1745-6584.2009.00575.x. Li, G., D. Loper, and R. Kung, 2008. Contaminant sequestration in karstic aquifers: Experiments and quantification, Water Resources Research, 44, W02429, doi:10.1029/2006WR005797. 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