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淮北市用水主要取自地下水,开采量大,开采布局不合理已引发一系列环境问题。建立可靠的地下水流数值模拟模型,对于定量评价淮北市地下水资源、优化开采布局具有重要的现实意义,而目前针对淮北市进行的地下水数值模拟研究尚不多见。在分析安徽淮北市水文地质条件的基础上,建立了研究区水文地质概念模型和地下水流数学模型。并应用灵敏度分析法及蒙特卡罗法对模拟层的水文地质参数进行不确定性分析。灵敏度分析结果表明,含水层的给水度或单位释水系数及弱透水层的垂向渗透系数对模拟结果的影响最大,获得了各层灵敏度最大的参数分区,可为今后野外勘察试验提供参考。蒙特卡罗法结果直观地反映出各层敏感性分布,进一步证明了确定性模型的合理性。 相似文献
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白垩系基岩孔隙裂隙承压含水层为研究区地下水主要含水层之一,水文地质模型概化为各项异性非均质.根据地下水系统运动规律及分布特征建立三维非稳定流数学模型,采用广义差分法对其求解,并以长春市区为例对模型进行识别验证.结果表明,计算模型与实际水文地质条件比较接近,计算水位与实测水位相吻合;为研究区地下水系统可持续管理提供了科学理论依据. 相似文献
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基于数值模拟技术以象山矿11#煤底板奥灰含水层放水试验成果为基础,深入分析与合理概化水文地质条件,采用三维地下水模拟软件Visual MODFLOW建立研究区地下水系统的三维数值模型。经过模型的校正分析,认识矿井水文地质条件,反演得出含水层主要水文地质参数,最终合理的预测了该矿井11#煤研究区底板带压涌水量及首采面奥灰含水层涌水量。 相似文献
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常用的线性规划、非线性规划和动态规划等最优化方法可以有效地解决比较简单的含水层系统和地下水管理系统模型问题。但要解决复杂的地下水资源系统分析和优选管理方案,要求水文地质工作者能够比较准确地预测含水层系统对开采地下水和人工回补地下水等决策的响应。为此,必须对研究地区建立较准确的含水层系统模型以反映真实系统的特征,但这 相似文献
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Generally, an aquifer system coupled into a groundwater management model was regarded as a linear system. However, in terms of systems analysis, the aquifer system can be proven to be an incremental linear system rather than a linear system. For example, a confined aquifer system can be decomposed into two parts, one of which is a linear time invariability sub-system and another is a zero-input response. This system does not meet the additivity property of linear system, but satisfies the incremental linear system characteristics. In order to better understand, a case study of water resources management of Huaibei city within semiarid region, north Anhui province of China, is cited. Taking into account the water demand for satisfying the urban development in the next 15 years, three planning target years of water resources are preset as the present (2005), the short term (2010) and the long term (2020), respectively, and four hydrological years (e.g., wet year, mean year, dry year, and extremely dry year) are also defined by the rainfall data of many years. A groundwater management model based on linear programming is established. This model can deal with 12 possible scenarios (3 target years × 4 hydrological years), optimize the strategies of water resources development, integrate various kinds of water sources (e.g., groundwater, surface–water and additional water) and meet the water demand for the urban development of Huaibei city. In accordance with the groundwater management model solutions, the problem of groundwater drawdown funnels (groundwater overextraction funnels) which formed within the Huaibei downtown area for many years and led to some environmental and social issues will be solved over the whole planning period. More importantly, through statistically analyzing the model solutions, the relationships between the groundwater pumping (input signals) and groundwater level recovery (output signals) show up the characteristics of the incremental linear system. 相似文献
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薄层含水系统水资源优化管理研究——以延吉市为例 总被引:2,自引:0,他引:2
以延吉市为例,针对薄层含水系统,利用分布参数响应系数法和单元均衡法相结合的方法,建立了地表水-地下水联合调度单元管理模型。在优化管理方案中提出,对河水和地下水实行分质供水,以提高水资源的利用率。 相似文献
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Many cities in developing countries are dependent upon groundwater for water supply. Frequently this groundwater is pumped
from semi-confined aquifers in alluvial deposits. These deeper aquifers are often considered to be protected from polluted
shallow water by intervening less-permeable layers. However, where groundwater is pumped from a semi-confined aquifer immediately
beneath a city, significant induced leakage of contaminated shallow water can occur. This may lead to a serious deterioration
of water quality in deeper aquifers in the longer-term. A simple model has been developed which provides insight into the
hydraulic controls on water quality in such semi-confined aquifers. The model provides a tool for the initial assessment and
prediction of the impact of urbanization on groundwater quality. Also, the model characterizes the key hydrogeological behaviour
through a single parameter, here termed the ‘city leakage factor’, which can be used to assess the vulnerability to contamination
by leakage. A case study of a city in Thailand illustrates the use of this model.
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Résumé Beaucoup de villes des pays en développement dépendent de l’eau souterraine pour leur alimentation en eau. Cette eau souterraine est souvent pompée dans des aquifères alluviaux semi-captifs. Ces aquifères plus profonds sont souvent considérés comme protégés des eaux peu profondes et polluées, grace à des couches intercalaires moins perméables. Cependant, dans le cas où l’eau souterraine est pompée à partir d’un aquifère semi-captif situé directement sous une ville, une drainance importante des eaux peu profondes et polluées peut être induite. Ceci peut entra?ner, à long terme, une détérioration significative de la qualité de l’eau dans les aquifères plus profonds. Un modèle simple a été construit fournissant un aper?u des contr?les hydrauliques agissant sur la qualité de l’eau dans des aquifères semi-captifs. Ce modèle est un outil permettant d’évaluer l’état initial et de prédire l’impact de l’urbanisation sur la qualité de l’eau souterraine. Le modèle caractérise également les comportements hydrogéologiques majeurs à travers un unique paramètre, nommé dans cette étude facteur de drainance de la ville“, et qui peut être utilisé pour évaluer la vulnérabilité de l’aquifère face à une contamination par drainance. L’étude de cas d’une ville en Tha?lande illustre l’utilisation de ce modèle.
Resumen Muchas ciudades de paises en desarrollo dependen del agua subterránea para el abastecimiento de agua. Frecuentemente el agua subterránea se bombea de acuíferos semi-confinados en depósitos aluviales. Estos acuíferos más profundos se protegen frecuentemente de agua somera contaminada mediante la intervencción de capas menos permeables. Sin embargo, donde el agua subterránea se bombea de un acuífero semi-confinado inmediatamente debajo de una ciudad, pueden ocurrir fugas significativas inducidas de agua somera contaminada. Esto puede conducir a un serio deterioro de calidad de agua en acuíferos más profundos en el largo plazo. Se ha desarrollado un modelo simple el cual aporta idea acerca de los controles hidráulicos en la calidad del agua en tales acuíferos semi-confinados. El modelo aporta una herramienta para la evaluación inicial y predicción del impacto de urbanización en la calidad del agua subterránea. El modelo también caracteriza el comportamiento hidrogeológico clave a traves de un solo parámetro, que aquí se denomina ′factor de fuga de la ciudad′el cual puede usarse para evaluar la vulnerabilidad a la contaminación por fuga. El uso de este modelo se ilustra con un estudio de caso de una ciudad en Tailandia.
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A three dimensional steady-state finite difference groundwater flow model is used to quantify the groundwater fluxes and analyze
the subsurface hydrodynamics in the Akaki catchment by giving particular emphasis to the well field that supplies water to
the city of Addis Ababa. The area is characterized by Tertiary volcanics covered with thick residual and alluvial soils. The
model is calibrated using head observations from 131 wells. The simulation is made in a two layer unconfined aquifer with
spatially variable recharge and hydraulic conductivities under well-defined boundary conditions. The calibrated model is used
to forecast groundwater flow pattern, the interaction of groundwater and surface water, and the effect of pumping on the well
field under different scenarios. The result indicates that the groundwater flows regionally to the south converging to the
major well field. Reservoirs and rivers play an important role in recharging the aquifer. Simulations made under different
pumping rate indicate that an increase in pumping rate results in substantial regional groundwater level decline, which will
lead to the drying of springs and shallow hand dug wells. Also, it has implications of reversal of flow from contaminated
rivers into productive aquifers close to main river courses. The scenario analysis shows that the groundwater potential is
not enough to sustain the ever-growing water demand of the city of Addis Ababa. The sensitivity and scenario analysis provided
important information on the data gaps and the specific sites to be selected for monitoring, and may be of great help for
transient model development. This study has laid the foundation for developing detailed predictive groundwater model, which
can be readily used for groundwater management practices. 相似文献
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针对中国一些沿海地区地下水超采及由此带来的海水入侵问题,将地表水补给、抽水量及地下水位等相嵌在一起,建立了沿海地区地下水模拟优化管理模型。将人工鱼群算法和基于MODFLOW2000的变密度地下水流及溶质运移模型耦合起来,对沿海地区地下水模拟优化管理模型进行求解。以山东省威海市节水示范区为例,验证模型的有效性和可靠性。结果表明,10、11、12月份抽水量最大,以后至第2年5月份依次是减少的;从区域分布上看,在临海区域1号井处抽水量是3500~1120m3/月,在其它井处是6540~2920m3/月;与现行方案相比,增加总有效供水1990m3,地下水平均水位升高0.29m,海水入侵问题能够得到解决。计算结果合理可行,为沿海地区地下水资源的科学管理和持续利用提供可靠依据。 相似文献
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Groundwater potential map is important for environmental assessment and water resources management. In this work, a groundwater recharge potential map was established for the watershed of Oued Djelfa Hadjia in Algeria, based on new multiparameters hybrid model. The model has hydroclimatic parameters, geological settings, slope factor, and stream network density factor as inputs. The groundwater recharge estimated by the model range from 0.71 to 14 mm. The model allows delineation of potential area of recharge. The total water abstraction in Djelfa city is about of 14 hm3; however, the calculated groundwater recharge is about 3 mm/year (min 0.71 mm and max 14 mm), which correspond to an average recharge volume of 3.9 hm3 which mean that the aquifer is under over exploitation. 相似文献
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乌鲁木齐河流域柴窝堡盆地与河谷区是乌鲁木齐市的重要供水水源地。为了更好地为地下水资源的可持续开发提供依据,本文尝试将几何形状及含水层厚度差异悬殊的柴窝堡盆地与河谷区联合起来,运用GMS模型系统建立了区域地下水稳定流和非稳定流数值模型。通过对观测孔地下水位过程线和地下水流场进行拟合,校正了研究区的渗透系数、给水度和储水率等水文地质参数。并运用模型分析了研究区的地下水流系统、地下水均衡量、地下水位变化趋势及地下水位监测网的设计。结果表明研究区地下水流主要存在两个径流排泄区:沿乌鲁木齐主河道的径流排泄区和以柴窝堡湖和大小盐湖为排泄中心的径流区;地下水储存量相对较大,能够调节季节性变化与地下水开采的影响;应加强主要河流洪积扇补给区和山前侧向补给带地下水位的监测与排泄区泉水流量的观测。 相似文献