Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Surface movement and deformation caused by pumping from confined aquifers pose serious threats to the safety and stability of surface buildings. A model for surface movement and deformation due to confined aquifer pumping is established based on the principle of coordinated strata deformation in which the effects of the aquifer thickness, elastic modulus, pumping capacity, and overlying strata thickness are comprehensively considered. The model calculation results for surface subsidence caused by pumping from a confined aquifer in Dezhou City, Shandong Province, China are compared with numerical simulation results to verify the accuracy and rationality of the model.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
59--74
Opis fizyczny
Bibliogr. 27 poz., rys.
Twórcy
autor
- School of Civil Engineering and Architecture, Anhui University of Science and Technology, Huainan, 232001, PR China
autor
- School of Civil Engineering and Architecture, Anhui University of Science and Technology, Huainan, PR China
- School of Resources and Environmental Engineering, Anhui University, Hefei, PR China
Bibliografia
- 1. Abidin H.Z., Andreas H., Gumilar I., Fukuda Y., Pohan Y.E., Deguchi T., 2011, Land subsidence of Jakarta (Indonesia) and its relation with urban development, Natural Hazards, 59, 3, 1753-1771
- 2. Bobileva T.N., 2017, Stress distribution in the stratified mass containing vertical alveole (in Russian), Vestnik MGSU, 12, 8(107), 863-868
- 3. Bourel C., 2024, Water flow in shallow aquifers without the Dupuit hypothesis, Computers and Mathematics with Applications, 163, 165-185
- 4. Cheng H., Zhang L.L., Yao Z.S., Peng S.L., Guo L.H., 2022, Mechanism of shaft deflection caused by asymmetric mining in thin bedrock and deep loose strata (in Chinese), Journal of China Coal Society, 47, 1, 102-114
- 5. Cui Z.D., Tang Y.Q., 2007, Domestic and international recent situation and research of land subsidence disasters (in Chinese), China Earthquake Engineering Journal, 29, 3, 275-278
- 6. Dudek M., Tajdus K., Misa R., Sroka A., 2020, Predicting of land surface uplift caused by the flooding of underground coal mines – A case study, International Journal of Rock Mechanics and Mining Sciences, 132, 104377
- 7. Galloway D.L., Burbey T.J., 2011, Review: Regional land subsidence accompanying groundwater extraction, Hydrogeology Journal, 19, 8, 1459-1486
- 8. Gamnitzer P., Hofstetter G., 2016, Fully coupled multi-phase modelling of pumping induced settlements, air- and water flow in multi-layered normally consolidated soils, Computers and Geotechnics, 79, 10-21
- 9. Giang N.V., 2022, Application of artificial storage, recharge for semi-arid area in BacBinh Vietnam, Archives of Mining Sciences, 67, 1, 37-53
- 10. Giao P.H., 1997, Artificial recharge of the Bangkok aquifer system for the mitigation of land subsidence, Dissertation No. GE-96-2, Asian Institute of Technology (AIT), Bangkok
- 11. Guido L., Libera E., Francesco F., 2023, Terzaghi’s effective stress principle and hydrological deformation of Karst aquifers detected by GNSS measurements, Rock Mechanics and Rock Engineering, 57, 4, 2365-2383
- 12. Holzer T.L., Johnson A.I., 1985, Land subsidence caused by ground water withdrawal in urban areas, GeoJournal, 11, 3, 245-255
- 13. Jia C., Di S.T., Sun X.X., Zhang S.P., Ding P.P., Liu Z.T., 2021, Spatiotemporal evolution characteristics and transfer law of land subsidence in sand-clay interbed caused by exploiting the groundwater, Arabian Journal for Science and Engineering, 46, 6, 5733-5753
- 14. Jia Y.J., Liang F.Y., Cui Z.D., Ye H., 2016, Analysis of soil deformation caused by decompression of confined water based on displacement coordination condition (in Chinese), Rock and Soil Mechanics, 37, 42-48
- 15. Li M.G., Chen J.J., Xu Y.S., Tong D.G., Cao W.W., Shi Y.J., 2021, Effects of groundwater exploitation and recharge on land subsidence and infrastructure settlement patterns in Shanghai, Engineering Geology, 282, 105995
- 16. Liu Z., Song Y., Zhou F., Wang L., 2023, Analytical solution for one-dimensional consolidation of unsaturated soils under dynamic load, Journal of Theoretical and Applied Mechanics, 61, 1, 11-22
- 17. Loaiciga H.A. , 2013, Consolidation settlement in aquifers caused by pumping, Journal of Geotechnical and Geoenvironmental Engineering, 139, 7, 1191-1204
- 18. Malinowska A., Hejmanowski R., Dai H., 2020, Ground movements modeling applying adjusted influence function, International Journal of Mining Science and Technology, 30, 2, 243-249
- 19. Motagh M., Shamshiri R., Haghighi M.H., Wetzel H.U., Akbari B., et al., 2017, Quantifying groundwater exploitation induced subsidence in the Rafsanjan plain, southeastern Iran, using InSAR time-series and in situ measurements, Engineering Geology, 218, 134-151
- 20. Ortega-Guerrero A., Rudolph D.L., Cherry J.A., 1999, Analysis of long-term land subsidence near Mexico City: field investigations and predictive modeling, Water Resources Research, 35, 11, 3327-3341
- 21. Peng S., Li Z., Xu Y., Cao G., 2023, Study on the nonlinear permeability mechanism and pore structure characteristics of deep confined aquifers, Applied Sciences, 13, 20, 11599
- 22. Szojda L., Kapusta L., 2023, Numerical analysis of buildings located on the edge of the post-mining basin, Archives of Mining Sciences, 68, 1, 125–140
- 23. Tajdus K., Sroka A., Dudek M., Misa R., Hager S., Rusek J., 2023, Effect of the entire coal basin flooding on the land surface deformation, Archives of Mining Sciences, 68, 3, 375-392
- 24. Tang F.Q., Bai F., 2011, Calculation method of surface subsidence caused by water loss in thick loess mining area (in Chinese), Journal of Xian University of Science and Technology, 31, 4, 448-452
- 25. Wang X.W., Yang T.L., Xu Y.S., Shen S.L., 2019, Evaluation of optimized depth of waterproof curtain to mitigate negative impacts during dewatering, Journal of Hydrology, 577, 123969
- 26. Xu Y.S., Yuan Y., Shen S.L., Yin Z.Y., Wu H.N., Ma L., 2015, Investigation into subsidence hazards due to groundwater pumping from Aquifer II in Changzhou, China, Natural Hazards, 78, 1, 281-296
- 27. Zhou N.Q., Vermeer P.A., Lou R.X., Tang Y.Q., Jiang S., 2010, Numerical simulation of deep foundation pit dewatering and optimization of controlling land subsidence, Engineering Geology, 114, 3-4, 251-260
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-236fa837-acb9-4d0a-850c-6de225a81745
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