Journal Publications
Global Spectral Analysis: Review of Numerical Methods, P. Sagaut, V. K. Suman, P. Sundaram, M. K. Rajpoot, Y. G. Bhumkar, S. Sengupta, A. Sengupta, T. K. Sengupta, Computers and Fluids, (Accepted), 2023
New RK type time-integration methods for stiff convection-diffusion-reaction systems, Vivek S. Yadav, Ankit Singh, Vikas Maurya, and Manoj K. Rajpoot, Computers and Fluids, 257, 105865, 2023
Novel hybrid compact schemes for stream function-velocity formulation of the incompressible Navier-Stokes equations, Vivek S. Yadav, Vikas Maurya, Praveen K. Maurya, and Manoj K. Rajpoot, Physics of Fluids, 35, 017114, 2023.
New compact difference schemes on non-uniform collocated and staggered grids for convection-dominated flows, Vivek S. Yadav, Praveen K. Maurya, and Manoj K. Rajpoot, International Journal for Numerical Methods in Fluids, 95, 743-776, 2022.
New two-derivative implicit-explicit Runge-Kutta methods for stiff reaction-diffusion systems, Ankit Singh, Vikas Maurya, and Manoj K. Rajpoot, Journal of Computational Physics, 471, 111610, 2022.
Spatiotemporal pattern formations in stiff reaction-diffusion systems by new time marching methods, Vivek S. Yadav, Vikas Maurya, Manoj K. Rajpoot, and Jyoti Jaglan, Applied Mathematics and Computation, 431, 127299, 2022.
Sound and soliton wave propagation in homogeneous and heterogeneous mediums with the new two-derivative implicit–explicit Runge–Kutta–Nyström method, Manoj K. Rajpoot, Vivek S. Yadav, Jyoti Jaglan, and Ankit Singh, AIP Advances, 12, 075110, 2022
New time-marching methods for compressible Navier-Stokes equations with applications to aeroacoustics problems, V. S. Yadav, N. Ganta, B. Mahato, M. K. Rajpoot, and Y. G. Bhumkar, Applied Mathematics and Computation, 419, 126863, 2022.
New optimized Implicit-Explicit Runge-Kutta methods with applications to the Hyperbolic Conservation Laws, Praveen K. Maurya, V. S. Yadav, B. Mahato, N. Ganta, M. K. Rajpoot, and Y. G. Bhumkar, Journal of Computational Physics, 446, 110650, 2021.
New hybrid compact schemes for structured irregular meshes using Birkhoff polynomial basis, Praveen K. Maurya, Manoj K. Rajpoot, Vivek S. Yadav, and Ankit Singh, Journal of Computational Physics, 423, 109808, 2020.
Higher-order optimized hybrid Robert-Asselin type time filters, Praveen K. Maurya, Vivek S. Yadav and Manoj K. Rajpoot, Journal of Computational Physics, 399, 108941, 2019
N. Sharma, A. Sengupta, Manoj K. Rajpoot, R. J. Samuel and T. K. Sengupta, Hybrid sixth order spatial discretization scheme for non-uniform Cartesian grids, Computers & Fluids, 157, 208-231, 2017.
Manoj K. Rajpoot, Dispersion analysis of Robert-Asselin type filters for linear non-dispersive and dispersive systems, Computers & Fluids, V. 130, 49, 2016.
T. K. Sengupta, Y. G. Bhumkar, Manoj K. Rajpoot, V. K. Suman and S. Saurabh, Spurious waves in discrete computation of wave phenomena and flow problems, Applied Mathematics and Computation, V. 218, 9035, 2013.
Manoj K. Rajpoot, S. Bhaumik and T. K. Sengupta, Solution of linearized rotating shallow water equations by compact schemes with different grid-staggering strategies, Journal of Computational Physics, V. 231, 2300, 2012.
T. K. Sengupta, Manoj K. Rajpoot and Y. G. Bhumkar, Space-time discretizing optimal DRP schemes for flow and wave propagation problems, Computers and Fluids, V. 47, 144, 2011.
Y. G. Bhumkar, Manoj K. Rajpoot and T. K. Sengupta, A linear focusing mechanism for dispersive and non-dispersive wave problems, Journal of Computational Physics, V. 230, 1652, 2011.
T. K. Sengupta, Manoj K. Rajpoot, S. Saurabh and V. V. S. N. Vijay, Analysis of anisotropy of numerical wave solutions by high accuracy finite difference methods, Journal of Computational Physics, V. 230, 27, 2011.
Manoj K. Rajpoot, T. K. Sengupta and Pravir K. Dutt, Optimal time advancing dispersion relation preserving schemes, Journal of Computational Physics, V. 229, 3623, 2010.
Recent trends in HPC (Poster presentation), Manoj K. Rajpoot, V. K. Suman, Y. G. Bhumkar, N. Hussian, V. V. S. N. Vijay, In: Proceedings of the Asian Technology Information Program (ATIP) Supercomputing 2009 (SC009), 2009, Portland, Oregon, USA.