Journals:
24. P. K. Behera, M. Agarwal, Vishal Deshpande and B. Kumar - "Spectral Analysis of the Flows in Seepage Affected Threshold Alluvial Channels", Results in Engineering, Elsevier, 21, 101830. (2024) [IF = 5.0]
23. P. K. Behera, M. Patel, Vishal Deshpande and B. Kumar - "Patterns of turbulent flow structure over dune-shaped bed features under the influence of downward seepage", Experimental Thermal and Fluid Science, Elsevier, 153, 111128. (2024) [IF = 3.2]
22. D. Shakya, M. Agarwal, Vishal Deshpande and Bimlesh Kumar - “Closure to “Estimating Particle Froude Number of Sewer Pipes by Boosting Machine-Learning Models”. Journal of Pipeline Systems Engineering and Practice, ASCE, 15(1). (2024) [IF = 1.92]
21. P. K .Shukla, Vishal Deshpande and T. Raychoudhury- In-situ groundwater treatment for arsenic removal: Laboratory pilot scale study with 3-D tank packed porous media as subsurface. Environmental Technology (2023) [IF = 2.8]
20. D. Shakya, Vishal Deshpande, M. K. Goyal and M. Agarwal- PM 2.5 air pollution prediction through deep learning using meteorological, vehicular, and emission data: A case study of New Delhi, India. Journal of Cleaner Production. (2023) [IF = 11.1]
19. P. Behera, Vishal Deshpande, M. Patel and B. Kumar- Anisotropy in Turbulent flow over Two-dimensional Fixed Bedforms with Downward Seepage. Journal of Irrigation and Drainage Engineering, ASCE, (2023) [IF = 2.6]
18. Kumar S., Agarwal M., Vishal Deshpande and Kumar B.- Predicting Flow Velocity in a Vegetative Alluvial Channel using Standalone and Hybrid Machine Learning Techniques. Expert Systems with Applications. (2023) [IF =8.5]
17. Behera P., Vishal Deshpande and Kumar B.- Behavioral patterns of turbulent kinetic energy budget and quadrant analysis for flows over bedform under the influence of downward seepage, AIP Advances, AIP Publishing. (2023) [IF = 1.697]
16. Shakya D., Vishal Deshpande, Kumar B., Agarwal M.- Predicting Total Sediment Load Transport in Rivers using Regression Techniques, Extreme Learning and Deep Learning Models. Artificial Intelligence Review. (2023) [IF = 12.0]
15. Kumar S., Goyal M., Vishal Deshpande, Agarwal M.- Estimation of Time Dependent Scour Depth around Circular Bridge Piers: Application of Ensemble Machine Learning Methods. Ocean Engineering, 270, 113611. (2023) [IF = 4.372]
14. Kumar S., Kirar B., Agarwal A., Vishal Deshpande (2022). Application of Novel Hybrid Machine Learning Techniques for Particle Froude Number Estimation in Sewer Pipes. Natural Hazards. [IF = 3.16]
13. Tiwari, M., Shukla, P. K., Vishal Deshpande, & Raychoudhury, T. (2022). Performance of FeS synthesized within the porous media for in-situ immobilization of arsenic under varying water chemistry and groundwater conditions. Groundwater for Sustainable Development, 19, 100835. [IF = 5.9]
12. Shakya, D., Agarwal, M., Vishal Deshpande, & Kumar, B. (2022). Estimating Particle Froude Number of Sewer Pipes by Boosting Machine-Learning Models. Journal of Pipeline Systems Engineering and Practice, ASCE, 13(2), 04022012. [IF = 1.92]
11. Shakya, D., Vishal Deshpande, Agarwal, M., & Kumar, B. (2022). Standalone and ensemble-based machine learning techniques for particle Froude number prediction in a sewer system. Neural Computing and Applications, 1-17. [IF = 5.102]
10. Agarwal, M., Vishal Deshpande, Katoshevski, D., & Kumar, B. (2021). A novel Python module for statistical analysis of turbulence (P-SAT) in geophysical flows. Nature Scientific Reports, 11(1), 1-20. [IF = 4.996]
9. Lade, A. D., Vishal Deshpande., & Kumar, B. (2020, October). Study of flow turbulence around a circular bridge pier in sand-mined stream channel. Proceedings of the Institution of Civil Engineers-Water Management (Vol. 173, No. 5, pp. 217-237). Thomas Telford Ltd. . [IF = 1.39]
8. A. D. Lade, Vishal Deshpande, B. Kumar and G. Oliveto, On the morphodynamic alterations around bridge piers under the influence of instream mining, WATER, 11(8). [IF = 3.53]
7. Vishal Deshpande and B. Kumar (2016), Turbulent flow structures in alluvial channels with curved cross‐sections under conditions of downward seepage, Earth Surface Processes and Landforms, 41(8), 1073-1087. [IF = 3.96]
6. Vishal Deshpande and B. Kumar (2015), Effect of downward seepage on the shape of an alluvial Channels, Proceedings of the Institution of Civil Engineers-Water Management, Thomas Telford Ltd, Vol. 170, No. 1, pp. 3-14. [IF = 1.39]
5. M. Patel, Vishal Deshpande and B. Kumar (2015), Turbulent characteristics and evolution of sheet flow in an alluvial channel with downward seepage, Geomorphology, 248, 161 – 171. [IF = 4.41]
4. Vishal Deshpande and B. Kumar (2015), Advent of Sheet flow in Suction affected alluvial Channels, Environmental Fluid Mechanics, 16(1), 25 – 44. [IF = 2.62]
3. Vishal Deshpande and B. Kumar (2015), Does Downward Seepage Initiate Lateral Channel Shifts?, National Academy Science Letters, 38(6), 479 – 482. [IF = 1.1]
2. B. Kumar, Anjaneya, Vishal Deshpande, and G. Sreenivsulu (2014), Regression Model for Sediment Transport Problems using Multi-Gene symbolic genetic Programming, Computers and Electronics in Agriculture, 103(1), 82 – 90. [IF = 8.3]
1. Vishal Deshpande and B. Kumar (2012), Review and Assessment of the Theories of Stable Alluvial Channel Design, Water Resources, 39(4), 481 – 487. [IF = 1.0]