Santanu Raut

ORCID: 0000-0003-0619-5577
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About
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Research Areas
  • Nonlinear Waves and Solitons
  • Nonlinear Photonic Systems
  • Dust and Plasma Wave Phenomena
  • Fractional Differential Equations Solutions
  • Nanofluid Flow and Heat Transfer
  • Ionosphere and magnetosphere dynamics
  • Mathematical Dynamics and Fractals
  • Advanced Mathematical Physics Problems
  • Heat Transfer and Optimization
  • Heat Transfer Mechanisms
  • Fluid Dynamics and Turbulent Flows
  • Complex Systems and Time Series Analysis
  • Quantum Mechanics and Non-Hermitian Physics
  • Advanced Mathematical Theories and Applications
  • Heat Transfer and Boiling Studies
  • Mathematical and Theoretical Analysis
  • Cold Atom Physics and Bose-Einstein Condensates
  • Algebraic structures and combinatorial models
  • Statistical Mechanics and Entropy
  • Theoretical and Computational Physics
  • Magnetic confinement fusion research
  • Numerical methods in engineering
  • Fractal and DNA sequence analysis
  • Microfluidic and Bio-sensing Technologies
  • advanced mathematical theories

Visva-Bharati University
2022-2024

Clemson University
2024

Bridge University
2022-2023

Cooch Behar Panchanan Barma University
2022-2023

Rayat Shikshan Sanstha
2010-2011

North Bengal University
2005-2010

Abstract Microorganism cells movement in the fluid is universal and affects many ecological biological processes, including infection, reproduction, marine life ecosystem. There are medical applications that require an understanding of transport process nanofluids containing a suspension microorganism. The present problem deals with bioconvection Casson nanofluid motile gyrotactic microorganisms over inclined stretching sheet presence thermal radiation, viscous dissipation, chemical reaction...

10.1115/1.4048946 article EN Journal of Heat Transfer 2020-10-29

This investigation analyzes the propagation of nonlinear ion-acoustic waves (IAWs) in an unmagnetized, collisionless plasma composed inertial positive ions and inertialess Maxwellian positrons as well non-Maxwellian electrons that obey (r, q)-distribution. To observe impact particle trapping on IAWs electron–positron–ion plasma, Korteweg–De Vries (KdV) modified KdV (mKdV) equations are derived using a reductive perturbation method. In distribution function, spectral parameters q) put up...

10.1063/5.0150737 article EN Physics of Fluids 2023-05-01

This article investigates the propagation of different types nonlinear ion-acoustic waves, including periodic solitons, and breathers in non-Maxwellian magnetized plasma. The plasma model consists inertial cold ions, inertialess electrons that obey a Boltzmann distribution, hot follow generalized (r, q) distribution. reductive perturbation technique is utilized to obtain Korteweg–de Vries–Zakharov–Kuznetsov equation (KdV-ZK) from fluid equations govern dynamics. Furthermore, modified KdV-ZK...

10.1063/5.0220798 article EN cc-by Physics of Plasmas 2024-08-01

Abstract Bioconvection due to the movement of micro-organism cells is universal and affects many ecological biological processes, including infection, reproduction, marine life ecosystems. The impact bioconvection more significant in nanofluids. In present problem, we investigate Marangoni triply stratified bioconvective flow non-Newtonian (second-grade) nanofluid with presence motile micro-organisms over a permeable inclined plate. problem provides an analysis second-order effects, namely,...

10.1115/1.4054770 article EN Journal of Heat Transfer 2022-06-09

The (2+1)-dimensional combined Zakharsov-Kuznetsov-modified Zakarsov-Kuznetsov (ZK-mZK) equation with constant co-efficients are solved by employing the complete discrimination system for polynomial Method (CDSPM). Use of it reduces key Nonlinear Differential Equation (NLPDE) to an Ordinary (ODE) in integral form under traveling wave transformation, and solutions classified. Exact derived using CDSPM order four. Based on CDSPM, Liu's approach provides a set new including Jacobi elliptic...

10.1016/j.aej.2023.06.020 article EN cc-by-nc-nd Alexandria Engineering Journal 2023-06-19

Serpentine microchannels have been frequently used in microfluidic devices for enhanced inertial focusing and separation of particles cells with a reduced footprint. However, there are only few studies on particle cell manipulation the flow non-Newtonian fluids through serpentine microchannels. This work presents systematic experimental investigation both individual combined effects fluid elasticity, shear thinning, inertia migration symmetric microchannel. Five types polymer solutions,...

10.1063/5.0250008 article EN cc-by Physics of Fluids 2024-12-01
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