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Research Article

Future groundwater extraction scenarios based on COMSOL multiphysics for the confined aquifer at Linfen basin, Shanxi Province, China

ORCID Icon & | (Reviewing Editor)
Article: 1404178 | Received 06 Jun 2017, Accepted 25 Oct 2017, Published online: 26 Nov 2017

References

  • Bai, L. P., & Wang, J. S. (2004). The application of GMS in numerical simulation of ground water in Linfen basin. Shanxi Architecture, 30(16), 78–79.
  • Bai, L. P., Wang, Y., & Wang, J. S. (2009). Groundwater quantitative analysis of Linfen basin. Yellow River, 31(2), 45–47.
  • Dinesh, P., Kartha, S. A., & Dutta, S. (2014) Groundwater flow modeling of Kosi Alluvial fan in Bihar state using GMS 3D grid approach. National Conference on Water and its Sustainability in Mining and Other Environment (WSME) Vision 2050, 289–298.
  • Dong, D. L., Wu, Q., Sun, G. M., Jiang, Z. Q., Sui, W. H., & Tian, B. L. (1999). Correlative relation between earth-fissure hazards and over-exploitation of groundwater. Journal of China University of Mining & Technology, 28(1), 90–93.
  • Fu, Y. J., Wu, Q., & Li, S. W. (2003). Reasonable development and exploitation on karst groundwater in Changzhi basin. Carsologica Sinica, 22(2), 96–102.
  • Guo, Q. H. (2005) Ground system evolution and genesis of relevant environmental problems: A case study at Taiyuan basin, Shanxi Province, China. PHD Dissertation of China University of Geosciences.
  • Han, D. M. (2007) Analysis of groundwater flow system and modelling of hydrogeochemical evolution in Xinzhou basin, China. PHD Dissertation of China University of Geosciences.
  • Han, Y. (2008). Characters of the groundwater flow field and hydrochemistry field in Datong basin. Geological Survey & Research, 31(2), 138–146.
  • Hand J. (2012). Pumping and injecting from a single borehole. COMSOL News, 55.
  • Jin, Y., Holzbecher, E., & Ebneth, S. (2012) Simulation of pumping induced groundwater flow in unconfined aquifer using arbitrary Lagrangian-Eulerian method. COMSOL Conference.
  • Jin, Y., Holzbecher, E., & Oberdorfer, P. (2011) Simulation of a novel groundwater lowering technique using arbitrary Lagrangian-Eulerian method, COMSOL Conference.
  • Kabera, K., & Luo, Z. (2012). A GIS based DRASTIC model for assessing groundwater in shallow aquifer in Yuncheng basin, Shanxi, China. Research Journal of Applied Sciences, 3(3), 195–205.
  • Kitanidis, P. K. (2008) Depth-averaged modeling of groundwater flow and transport, COMSOL Conference.
  • Li, C., Gao, X., & Wang, Y. (2014). Hydrogeochemistry of high-fluoride groundwater at Yuncheng Basin, northern China. Geochemistry International, 52(10), 868–881.
  • Li, H., Han, D. M., Liang, X., Yang, J. L., & Cao, G. L. (2014). Three dimensional hydrogeological structure modeling of aquifer system to Quaternary in the Xinzhou basin. Geotechnical Investigation & Surveying, 8, 39–48.
  • Li, Q., Ito, K., Wu, Z. S., Lowry, C. S., & Loheide, S. P. (2009). COMSOL multiphysics: A novel approach to ground water modeling. Ground Water, 47(4), 480–487.
  • Liu, Z. F., & Han, J. Q. (2004). A study on the causes of ground fissure disasters in Linfen and the countermeasures. Journal of Catastrophology, 19(10), 97–100.
  • Samake, M., Tang, Z. H., Hlaing, W., Mbue, I. N., Kasereka, K., & Balogun, W. O. (2011). Groundwater vulnerability assessment in shallow aquifer in Linfen basin, Shanxi Province, China using DRASTIC model. Journal of Sustainable Development, 4(1), 53–71.
  • Sun, X. H., Peng, J. B., Cui, X. M., & Jiang, Z. W. (2016). Relationship between ground fissures, groundwater exploration and land subsidence in Taiyuan basin. The Chinese Journal of Geological Hazard and Control, 27(2), 91–98.
  • Wang, Y. Y., Bai, L. P., & Wang, J. S. (2009). Influences of climatic anomaly on the groundwater system in Linfen basin. Resources Science, 31(7), 1168–1174.
  • Whitmore, M. K. B., Trott, D. W., Peercy, B. E., Baker, M. E., & Gobbert M. K. (2011) COMSOL modeling of groundwater flow and contaminant transport in two-dimensional geometries with heterogeneities. COMSOL Conference.
  • Wilson, T. M. H., Xie, X., Pi, K., Liu, Y., & Zhu, Y. (2016). Understanding arsenic mobilization using reactive transport modeling of groundwater hydrochemistry in the Datong basin study plot. China. Environmental Science Processes & Impacts, 18(3), 371–385.
  • Yang, P. (2008). Groundwater dynamic analysis in Shanxi Province. Groundwater Water., 30(4), 57–65.
  • Zhang, F. E., Fan, G. S., & Guo, W. C. (2008). The secondary development of display program of groundwater level variation graph based on arc view. Journal of Taiyuan University of Technology, 39(1), 71–74.
  • Zhang, J. T. (2008). Strategic framework of groundwater protection in Shanxi Province. China Water Resources, 3, 37–38.
  • Zhang, Y. (2009). Discussion on existing problem in development and utilization of groundwater resources of Changzhi basin. Shanxi Coking Coal Science & Technology, 5, 7–9.