Anirban Dhar
Affiliations: | 2008- | Civil Engineering | Indian Institute of Technology Kharagpur |
Area:
Civil Engineering, Groundwater Hydrology, Computational HydraulicsGoogle:
"Anirban Dhar"
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Publications
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Dey S, Dhar A. (2020) On proper orthogonal decomposition (POD) based reduced-order modeling of groundwater flow through heterogeneous porous media with point source singularity Advances in Water Resources. 144: 103703 |
Kumari K, Jain S, Dhar A. (2019) Computationally efficient approach for identification of fuzzy dynamic groundwater sampling network. Environmental Monitoring and Assessment. 191: 310 |
Sahoo S, Dey S, Dhar A, et al. (2019) On projected hydrological scenarios under the influence of bias-corrected climatic variables and LULC Ecological Indicators. 106: 105440 |
Sahoo S, Dhar A, Debsarkar A, et al. (2019) Future Scenarios of Environmental Vulnerability Mapping Using Grey Analytic Hierarchy Process Natural Resources Research. 28: 1461-1483 |
Sahoo S, Dhar A, Debsarkar A, et al. (2019) Identification of water-stressed area based on the interrelationship of soil moisture and seasonal rice cultivation Paddy and Water Environment. 18: 193-209 |
Sahoo M, Dhar A, Kasot A, et al. (2018) Space-Time Cokriging Approach for Groundwater-Level Prediction with Multiattribute Multiresolution Satellite Data Journal of Hydrologic Engineering. 23: 05018012 |
Sahoo S, Sil I, Dhar A, et al. (2018) Future scenarios of land-use suitability modeling for agricultural sustainability in a river basin Journal of Cleaner Production. 205: 313-328 |
Sahoo S, Dhar A, Debsarkar A, et al. (2018) Impact of water demand on hydrological regime under climate and LULC change scenarios Environmental Earth Sciences. 77 |
Munusamy SB, Dhar A. (2018) On Use of Expanding Parameters and Auxiliary Term in Homotopy Perturbation Method for Boussinesq Equation with Tidal Condition Environmental Modeling & Assessment. 24: 109-120 |
Pahar G, Dhar A. (2018) On modeling of MPS-based multiphase fluid flow with low density ratios International Journal For Numerical Methods in Fluids. 87: 529-542 |