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sudeshna ghosh
sudeshna ghosh
Amity University Harayana
Verified email at ggn.amity.edu
Title
Cited by
Cited by
Year
Numerical simulations of particle sedimentation using the immersed boundary method
S Ghosh, JM Stockie
Communications in Computational Physics 18 (2), 380-416, 2015
572015
Simulating biofilm deformation and detachment with the immersed boundary method
R Sudarsan, S Ghosh, JM Stockie, HJ Eberl
Communications in Computational Physics 19 (3), 682-732, 2016
252016
Study of drafting, kissing and tumbling process of two particles with different sizes and densities using immersed boundary method in a confined medium
S Ghosh, M Kumar
Applied Mathematics and Computation 386, 125411, 2020
232020
Study of drafting, kissing and tumbling process of two particles with different sizes using immersed boundary method in a confined medium
S Ghosh, M Kumar
Mathematics and Computers in Simulation 177, 341-357, 2020
142020
Modeling and Experimental Validation of Deagglomeration of Ultrafine Nanoparticles in Liquid Al During Noncontact Ultrasonic Casting of Al–Al2O3 Nanocomposite
P Padhi, KN Kumar, S Ghosh, HM Vishwanatha, SC Panigrahi, S Ghosh
Materials and Manufacturing Processes 31 (12), 1589-1596, 2016
142016
The immersed boundary method for simulating gravitational settling and fluid shear-induced deformation of elastic structures
S Ghosh
Simon Fraser University, 2013
102013
Study of gravitational settling of single semi-torus shaped particle using immersed boundary method
S Ghosh, P Yadav
Applied Mathematics and Computation 413, 126643, 2022
92022
Immersed boundary method for a permeable sedimenting circular particle between two parallel rigid walls
S Ghosh
Progress in Computational Fluid Dynamics, an International Journal 20 (1), 20-28, 2020
92020
Time period of thermal-induced vibration of skew plate with two-dimensional circular thickness
A Sharma, R Bhardwaj, N Lather, S Ghosh, N Mani, K Kumar
Mathematical Problems in Engineering 2022, 2022
62022
Study of gravitational settling of a flexible circular structure using immersed boundary method
S Ghosh, R Panghal
Computational and Applied Mathematics 41 (8), 1--15, 2022
42022
Numerical Studies of settling of an impermeable and permeable planktonic particle using Immersed boundary method (IBM)
P Yadav, S Ghosh
The European Physical Journal Plus 137 (6), 740, 2022
42022
Immersed boundary simulations of fluid shear-induced deformation of a cantilever beam
S Ghosh
Mathematics and Computers in Simulation 185, 384-402, 2021
42021
Study of gravitational sedimentation of flexible, permeable circular and planktonic particle applying the immersed boundary method
R Panghal, S Ghosh
International Journal of Sediment Research 38 (5), 643-652, 2023
32023
Gravitational settling of two impermeable semi-torus particles
G Sudeshna, Y Pooja, M Kishalay, P Rekha
Chinese Journal of Physics 86, 361-381, 2023
22023
Numerical studies of settling of a permeable particle of semi-torus shape applying immersed boundary method (IBM)
P Yadav, S Ghosh, R Panghal
AIP conference proceedings 2872 (1), 2023
12023
Effect of confining walls on settling permeable rigid isolated semi-torus particle applying immersed boundary method (IBM)
P Yadav, S Ghosh, A Sharma, R Panghal
Soft Computing: Theories and Applications: Proceedings of SoCTA 2022, 473-480, 2023
12023
Study of gravitational sedimentation of multiple permeable particles using immersed boundary method
S Ghosh, K Chhabra, D Sharma
Progress in Computational Fluid Dynamics, an International Journal 23 (2 …, 2023
12023
To study the effect of confining walls on flexible circular particle using immersed boundary method
R Panghal, S Ghosh, R Bhardwaj
Recent Advances in Sustainable Environment: Select Proceedings of RAiSE 2022 …, 2022
12022
Study of gravitational sedimentation of flexible planktonic shaped particle using immersed boundary method
R Panghal, S Ghosh, P Yadav
Am. Inst. Manag. Technol. Conf. Proceed.(AIMTCP) 2 (2), 248-258, 2022
12022
Study of gravitational sedimentation of two flexible circular shaped particles using Immersed Boundary Method
P Rekha, G Sudeshna, M Kishalay, Y Pooja
Chinese Journal of Physics 88, 647-669, 2024
2024
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