Laboratory simulation of groundwater hydraulic head in a karst aquifer system with conduit and fracture domains

被引:0
作者
Chunyan Zhang
Longcang Shu
Emmanuel K. Appiah-Adjei
Angelo G. A. Lobeyo
Ran Tang
Jianhui Fan
机构
[1] Hohai University,State Key Laboratory of Hydrology
[2] Kwame Nkrumah University of Science and Technology,Water Resources and Hydraulic Engineering
来源
Carbonates and Evaporites | 2016年 / 31卷
关键词
Karst aquifer system; Fracture; Conduit; Water hydraulic head; Hydrological scenarios; Laboratory simulation;
D O I
暂无
中图分类号
学科分类号
摘要
A karst analog model has been developed for simulating karst aquifer systems with fracture and conduit domains in the laboratory. In this study, sixty-four experiments under different recharging and discharging conditions were carried out with the analog setup to study flow in the karst analog model. The experiments did not only provide hydraulic head data but spring discharge process as well. The experimental results were used to obtain empirical models of water hydraulic head under different hydrological conditions, which together with the spring discharge analysis aided in developing a water hydraulic head prediction model for the analog model. The results showed that water hydraulic head increased with logarithm of time and declined in step-shaped style, which can be used in karst aquifer systems research. Consequently, the study provides useful information for a better understanding of flow in karst aquifer systems.
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页码:329 / 337
页数:8
相关论文
共 97 条
[1]  
Campbell CW(2002)Simulating time-varying cave flow and water hydraulic heads using the Storm Water Management Model Eng Geol 65 133-139
[2]  
Sullivan SM(2008)An improved method for delineating source protection zones for karst springs based on analysis of recession curve data Hydrogeol J 16 855-869
[3]  
Civita MV(2005)A neural network model for predicting aquifer water hydraulic head elevations Ground Water 43 231-241
[4]  
Coppola EA(2003)Hydrograph for small basins following intense storms Geophys Res Lett 30 1314-68
[5]  
Rana AJ(2013)An assembled extreme value statistical model of karst spring discharge J Hydrol 504 57-44
[6]  
Poulton MM(2009)Laboratory analog and numerical study of groundwater flow and solute transport in a karst aquifer with conduit and matrix domains J Contam Hydrol 110 34-90
[7]  
Szidarovszky F(2008)Neural networks to simulate regional ground water hydraulic heads affected by human activities Ground Water 46 80-1798
[8]  
Uhl VW(1978)The development of limestone caves in the dimensions of length and depth Can J Earth Sci 15 1783-1760
[9]  
Criss RE(2013)Simulating flow in karst aquifers at laboratory and sub-regional scales using MODFLOW-CFP Hydrogeol J 21 1749-1461
[10]  
Winston WE(2012)Review: groundwater flow and transport modeling of karst aquifers, with particular reference to the North Coast Limestone aquifer system of Puerto Rico Hydrogeol J 20 1441-315