Citation: | LIU Jun-qiu, XIE Xin-min. 2016: Numerical simulation of groundwater and early warnings from the simulated dynamic evolution trend in the plain area of Shenyang, Liaoning Province (P.R. China). Journal of Groundwater Science and Engineering, 4(4): 367-376. |
ZHANG Fa-wang, YI Qing, et al. 2016. Groundwater system division and description of Asia. Acta Geologica Sinica (English Edition), 90(4): 1434-1443 .
|
YANG Guo-li, MA Li-shan, et al. 2014. Application of MODFLOW to assessment of groundwater resources in dry area. Journal of Hebei Institute of Architectural Engineering, 32(2): 58-60 .
|
GONG Ai-xi. 2011. Research on water level and water flow binary management system of groundwater resources in Tianjin. Tianjin: Tianjin University .
|
Anon. 2000a. Visual MODFLOW V.2.8.2 user’s manual for professional applications in three-dimensional groundwater FLOW and contaminant transport modeling. Ontario: Waterloo Hydrogeology Inc, l-3 .
|
SHI Jian-sheng, LI Guo-min, et al. 2014. Evolution mechanism and control of ground-water in the North China Plain. Acta Geoscientica Sinica, 35(5):527-534 .
|
Gurwin J, Lubczynski M. 2005. Modeling of complex multi-aquifer systems for groundwater resources evaluation-Swidnica study case (Po?land). Hydrogeology Journal, 13(4): 627-639 .
|
Rao G T, Rao V V S G, et al. 2013. Application of numerical modeling for groundwater flow and contaminant transport analysis in the basaltic terrain, Bagalkot, India. Arabian Journal of Geosciences, 6(6): 1819-1833 .
|
SUN Xiang-tai, AI Xiao-yan, et al. 2012. Preliminary research on ecological ground-water level of Sanjiang Plain. Heilongjiang Science and Technology of Water Conservancy, 40(4):166-168 .
|
XUE li-juan, LI Wei, et al. 2010. Numerical modelling on exploited shallow groundwater flow in the plain of Haihe river basin. Geotechnical Investigation & Surveying, 38(3): 50-55 .
|
MA Lan. 2009. Simulation and Regulation of Groundwater Table Dynamics in the Minqin Basin of the Downstream Shiyang River. Yangling: Northwest A & F University .
|
XIE Xin-min, CHAI Fu-xin, et al. 2007. Preliminary study on critical depth of ground?water table. Ground Water, 29(6): 46-50 .
|
XIAO Chang-lai, FAN Wei, et al. 2007. Study on Control and Simulation of Groundwater Level in Urban Area of Shenyang. Journal of Arid Land Resources and Environment, 21(11): 31-34 .
|
Anon. 2000b. SSG Software. Washington: The Scientific Software Group, 4-5.
|
FANG Zhang, XIE Xin-min, et al. 2013. Confir-mation of groundwater alert water levels based on the GMS software-An case study of Anyang City in Henan Province. Water Saving Irrigation, (9): 57-60 .
|
ZHAO Cheng-yi, WANG Yu-chao, et al. 2005. Simulation of the effects of groundwater level on vegetation change by combining FEFLOW software. Ecological Modelling, 187(2): 341-351 .
|
HE Guo-ping, SHAO Jing-li, et al. 2003. Application of FEFLOW to groundwater flow simulation. Journal of Chengdu University of Technology, 30(4): 356-361 .
|
FENG Qi, PENG Jia-zhong, et al. 2012. Using the concept of ecological groundwater level to evaluate shallow groundwater resources in hyperarid desert regions. Journal of Arid Land, 4(4): 378-389 .
|
Mcdonald M G, Harbaugh A W. 1988. A modular three-dimensional finite-difference ground-water flow model. Washington: United States Government Printing Office .
|
FANG Zhang, XIE Xin-min, et al. 2014. Confirmation of controlled groundwater management level and demonstration study in Anyang City, Henan Province. Journal of Hydraulic Engineering, 45(10): 1205-1213 .
|
HUO Zai-lin, FENG Shao-yuan, et al. 2007. Simulation of effects of agricultural activities on groundwater level by combining FEFLOW and GIS. New Zealand Journal of Agricultural Research, 50(5): 839-846 .
|
ZHU Xiao-bin, WU Ji-chun, et al. 2005. Three dimensional numerical simulation of groundwater resources in deep aquifers of the Changjiang Delta (south of the Changjiang River). Scientia Geographica Sinica, 25(1): 68-73 .
|
ZHANG Chang-chun, SHAO Jing-li, et al. 2003. A study on the ecological groundwater table in the North China Plain. Journal of Jilin University (Earth Science Edition), 33(3): 323-326 .
|
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JGSE-ScholarOne Manuscript Launched on June 1, 2024.