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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >Groundwater potentiality mapping using geoelectrical-based aquifer hydraulic parameters: A GIS-based multi-criteria decision analysis modeling approach
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Groundwater potentiality mapping using geoelectrical-based aquifer hydraulic parameters: A GIS-based multi-criteria decision analysis modeling approach

机译:地下水潜力测定采用地电气基础含水层液压参数:基于GIS的多标准决策分析建模方法

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摘要

This study conducted a robust analysis on acquired 2D resistivity imaging data and borehole pumping test records to optimize groundwater potentiality mapping in Perak province, Malaysia using derived aquifer hydraulic properties. The transverse resistance (TR) parameter was determined from the interpreted 2D resistivity imaging data by applying the Dar-Zarrouk parameter equation. Linear regression and GIS techniques were used to regress the estimated values for TR parameters with the aquifer transmissivity values extracted from the geospatially produced BPT records-based aquifer transmissivity map to develop the aquifer transmissivity parameter predictive (ATPP) model. The reliability evaluated ATPP model using the Theil inequality coefficient measurement approach was used to establish geoelectrical-based hydraulic parameters (GHP) modeling equations for the modeling of transmissivity (Tr), hydraulic conductivity (K), storativity (St), and hydraulic diffusivity (D) properties. The applied GHP modeling equation results to the delineated aquifer media was used to produce aquifer potential conditioning factor maps for Tr, K, St, and D. The maps were modeled to develop an aquifer potential mapping index (APMI) model via applying the multi-criteria decision analysis-analytic hierarchy process principle. The area groundwater reservoir productivity potential model map produced based on the processed APMI model estimates in the GIS environment was found to be 71% accurate. This study establishes a good alternative approach to determine aquifer hydraulic parameters even in areas where pumping test information is unavailable using a cost effective geophysical data. The produced map can be explored for hydrological decision making.
机译:本研究对所收购的2D电阻率成像数据和钻孔泵浦试验记录进行了稳健的分析,以优化佩拉克省的地下水潜力测绘,马来西亚使用衍生的含水层液压性能。通过应用Dar-Zarrouk参数方程,从解释的2D电阻率成像数据确定横向电阻(TR)参数。线性回归和GIS技术用于将TR参数的估计值与从地理系统生产的BPT记录的含水层透射率映射映射提取的含水层透射率值进行分配,以开发含水层透射率参数预测(ATPP)模型。使用INIL不等式系数测量方法的可靠性评估ATPP模型用于建立用于透射率(TR),液压导电性(K),储藏性(ST)和液压扩散率的地电工基液压参数(GHP)建模方程( d)属性。应用的GHP建模方程式结果用于制作TR,K,ST和D的含水层潜在调理因子映射。通过应用多级,模拟地图以开发含水层电位映射指数(APMI)模型。标准决策分析 - 分析层次处理原则。基于GIS环境的加工APMI模型估计产生的区域地下水储层生产率潜在模型地图被发现为71%。本研究建立了一种良好的替代方法,即使在使用经济高效的地球物理数据的泵送测试信息不可用的区域中确定含水层液压参数。生产的地图可以探索用于水文决策。

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