首页> 外文期刊>Science in China. Series D, Earth sciences >Numerical modeling of geothermal groundwater flow in karst aquifer system in eastern Weibei, Shaanxi Province, China
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Numerical modeling of geothermal groundwater flow in karst aquifer system in eastern Weibei, Shaanxi Province, China

机译:陕西渭北岩溶含水层系统地热地下水流数值模拟

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摘要

The quantitative assessment of geothermal water resources is important to the exploitation and utilization of geothermal resources. In the geothermal water systems the density of groundwater changes with the temperature, therefore the variations in hydraulic heads and temperatures are very complicated. A three-dimensional density-dependent model coupling the groundwater flow and heat transport is established and used to simulate the geothermal water flow in the karst aquifers in eastern Weibei, Shaanxi Province, China. The multilayered karst aquifer system in the study area is cut by some major faults which control the regional groundwater flow. In order to calibrate and simulate the effect of the major faults, each fault is discretized as a belt of elements with special hydrological parameters in the numerical model. The groundwater dating data are used to be integrated with the groundwater flow pattern and calibrate the model. Simulation results show that the calculated hydraulic heads and temperature fit with the observed data well.
机译:地热水资源的定量评估对地热资源的开发利用具有重要意义。在地热水系统中,地下水的密度随温度而变化,因此水压头和温度的变化非常复杂。建立了一个与地下水流动与热传导耦合的三维密度依赖模型,并将其用于模拟陕西省渭北东部岩溶含水层中的地热水流。研究区的多层岩溶含水层系统被一些控制区域地下水流量的重大断层切断。为了校准和模拟主要断层的影响,在数值模型中将每个断层离散为带特殊水文参数的元素带。地下水测年数据用于与地下水流型集成并校准模型。仿真结果表明,所计算的水头和温度与观测数据吻合良好。

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