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Published on: November 18, 2015
Model description of combined numerical and stochastic groundwater flow in Bandung-Soreang Groundwater Basin, West
Achmad Darul1,2, Dasapta Erwin Irawan3, Prihadi Sumintadireja3
1Doctoral Program of Geological Engineering, Faculty of Earth Sciences and Technology, Bandung Institute of Technology (ITB), Bandung, West Java 40132, Indonesia.
Abstract:
The first groundwater modeling of the Bandung Aquifer Basin in 2009 used a finite difference method with a 0.5 km² grid, representing three volcanic geological layers. It assumed uniform hydraulic properties and used an equivalent homogeneous aquifer with anisotropic hydraulic conductivity.•Dataset: The study analyzed a comprehensive dataset of 196 boreholes. Of these, 130 boreholes had pumping test data, while the remaining 66 had both pumping test and well logging data. This diverse dataset provided a robust foundation for the analysis. Hydraulic conductivity (K) was estimated using the ordinary kriging method, a geostatistical technique that allows for optimal interpolation based on regression against observed values of surrounding data points.•Analyses: This study examines K distribution using a block model, employing finite difference modeling with an structured grid 0.1 km². Regionalized variable scenarios were applied to reduce estimation errors for certain areas, showing improved correlation.•Expected output: Results include: (1) Distribution maps of hydraulic conductivity; (2) Validation metrics and visualization comparing modeled to observed data; (3) Assessments of heterogeneous K values' impact on groundwater flow; (4) Recommendations for sustainable groundwater management practices.
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