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Dr. Satyvir Singh

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Research Interest

  • High-Order Discontinuous Galerkin Method
  • Computational Fluid Dynamics
  • Hydrodynamic Instability
  • Multi-species Flows
  • Moment Method for Gas Kinetic Theory

Education

  • Ph.D. in Mechanical and Aerospace Engineering, Gyeongsang National University, South Korea.
  • M.Tech. in Industrial Mathematics and Scientific Computing, Indian Institute of Technology Madras, Chennai, India.
  • M.Sc. in Mathematics, Chaudhary Charan Singh University Meerut, India.

Experiences

  • Postdoctoral Fellow, RWTH Aachen University, Germany (9.2022 – Present).
  • Postdoctoral Fellow, Nanyang Technological University, Singapore (8.2018 – 8.2022).
  • Course Tutor, Nanyang Technological University, Singapore (8.2021 – 11.2021).
  • Postdoctoral Fellow, Gyeongsang National University, South Korea (3.2018 – 7.2018).
  • Visiting Researcher, Northwestern Polytechnical University, Xi’an, China (7.2015 – 8.2015).
  • Assistant Professor, Galgotias College of Eng. & Technology, India (10.2011 – 2.2013).
  • Assistant Professor, IMS Engineering College, Ghaziabad, India (7.2011 – 10.2011).
  • M. Tech. Researcher, Indian Institute of Technology Madras, India (6.2010 – 6.2011).

Fellowships and Academic Achievements

  • Brain Korea 21 (BK 21+) Scholarship for Ph.D. Program, Govt. of South Korea (2013-2016).
  • GATE Financial HMRD Scholarship for M.Tech. Program, Govt. of India (2009-2011).
  • Qualified Junior Research Fellowship and National Eligibility Test in Mathematical Sciences (2011), A.I.R. - 38.
  • Qualified Graduate Aptitude Test for Engineering in Mathematics (2012), A.I.R. - 244

Recent Journal Publications

  • S. Singh, H. Song, M. Torrilhon (2024), “Modal Discontinuous Galerkin Simulations for Grad’s 13 Moment Equations: Application to Riemann Problem in Continuum-Rarefied Flow Regime”, Journal of Computational and Theoretical Transport (Q4).
  • S. Singh, D.T. Jalleli (2024), “Investigation of coupling effect on the evolution of Richtmyer–Meshkov instability at double heavy square bubbles”, SCIENCE CHINA Physics, Mechanics & Astronomy 67(1), 214711 (Q1).
  • S. Singh, A.H. Msmali (2023), “On the spatiotemporal pattern formation in nonlinear coupled reaction - diffusion systems”, Axioms 12(11), 1004 (Q2).
  • S. Singh (2023), “Investigation of aspect ratio effects on flow characteristics and vorticity generation in shock-induced rectangular bubble”, European Journal of Mechanics / B Fluids, 101, 131-148 (Q1).
  • S. Singh, M. Battiato (2023), “Investigation of shock Mach number effects on the growth of convergent Richtmyer Meshkov instability in a heavy square bubble”, Physica D: Nonlinear Phenomena, 453, 133844 (Q1).
  • S. Singh, M. Torrilhon (2023), “On the shock-driven hydrodynamic instability in square and rectangular light gas bubbles: a comparative study from numerical simulations”, Physics of Fluids, 35, 012117 (Q1).
  • S. Singh, R.C. Mittal, S.R. Thottoli, M. Tamsir (2023), “High-fidelity simulations for Turing pattern formation in multi-dimensional Gray-Scott reaction-diffusion system”, Applied Mathematics and Computation, 452, 128079 (Q1).
  • A. K. Shukla, M. K. Awasthi, S. Singh (2023), “Impact of heat and mass transport on Rayleigh-Taylor instability of Walter’s B viscoelastic fluid layer”, Microgravity Science and Technology, 35 (3), 1-11 (Q2).
  • S. Singh, M. Battiato (2022), “Numerical simulations of Richtmyer-Meshkov instability of SF6 square bubble in diatomic and polyatomic gases”, Computers & Fluids, 242, 105502 (Q1).
  • S. Singh, A. Karchani, T. Chourushi, R.S. Myong (2022), “A three-dimensional modal discontinuous Galerkin method for second-order Boltzmann-Curtiss constitutive models of rarefied and microscale gas flows”, Journal of Computational Physics, 457, 111052 (Q1).