Dr. D. Arumuga  Perumal
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Dr. D. Arumuga Perumal

Assistant Professor
National Institute of Technology Karnataka, India


Highest Degree
Ph.D. in Mechanical Engineering from Indian Institute of Technology Guwahati, India

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Area of Interest:

Engineering
100%
Mechanical Engineering
62%
Computational Fluid Dynamics
90%
Numerical Heat Transfer
75%
Bluff Body Flows
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Perumal, D.A., M.P. Mydeen, C.S. Sabarish, M. Selvan and B. Duraisamy, 2016. Analysis of flow Behaviour in a Jet Ejector using CFD. In: Recent Advances in Chemical Engineering, Regupathi, I., K.V. Shetty and M. Thanabalan (Eds.). Springer, Singapore, ISBN: 978-981-10-1633-2, pp: 345-354.
  2. Perumal, D.A., G.V.S. Kumar and A.K. Dass, 2016. A numerical study of fluid transport phenomenon over two tandem and side-by-side circular cylinders by LBM. J. Chem. Pharm. Sci., 2: 30-34.
    Direct Link  |  
  3. Perumal, D.A., 2016. Simulation of two-sided deep cavity flows by lattice boltzmann multi-relaxation-time model. Global J. Pure Applied Math., 12: 88-95.
  4. Perumal, D.A., 2016. LBM simulation and analytical validation of incompressible couette and poiseuille flows. IOSR J. Mech. Civil Eng., 1: 13-19.
  5. Perumal, D.A., 2015. Mesoscopic modeling of density-internal energy distribution function for convection heat transfer. IUP J. Mech. Eng., 8: 29-41.
  6. Perumal, D.A. and A.K. Dass, 2015. A review on the development of lattice boltzmann computation of macro fluid flows and heat transfer. Alexandria Eng. J., 54: 955-971.
    CrossRef  |  Direct Link  |  
  7. Perumal, D.A., L. Agarwal, R.T.K. Raj, A. Harshan and K.N. Gopal, 2014. Examination of the lattice boltzmann method in simulation of manufacturing. ARPN J. Eng. Applied Sci., 9: 471-478.
  8. Perumal, D.A., I.M. Gowhar, S.A. Ananthapuri and V. Jayakrishnan, 2014. Computation of temperature distributions on uniform and non-uniform lattice sizes using mesoscopic lattice Boltzmann method. J. Mech. Eng., 11: 53-65.
  9. Perumal, D.A., G.V.S. Kumar and A.K. Dass, 2014. Lattice boltzmann simulation of viscous flow over a circular cylinder at moderate reynolds numbers. Thermal Sci., 18: 1235-1246.
    CrossRef  |  
  10. Perumal, D.A. and A.K. Dass, 2014. Lattice boltzmann simulation of two- and three- dimensional incompressible thermal flows. Heat Transfer Eng., 35: 1320-1333.
    CrossRef  |  
  11. Perumal, D.A. and A.K. Dass, 2014. Computation of lattice kinetic scheme for double-sided parallel and antiparallel wall motion. Applied Mech. Mater., 592-594: 1967-1971.
    CrossRef  |  
  12. Perumal, D.A. and A.K. Dass, 2013. Lattice boltzmann computation of flows in three-dimensional lid-driven cavities with two types of wall motion. Int. J. Mech. Mater. Eng., 8: 105-115.
  13. Perumal, D.A. and A.K. Dass, 2013. Application of lattice boltzmann method for incompressible viscous flows. Applied Math. Model., 37: 4075-4092.
    CrossRef  |  
  14. Perumal, A., 2013. Lattice boltzmann simulation of laminar flow in a three-dimensional two-sided lid-driven cavity. World J. Model. Simul., 9: 277-288.
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  15. Perumal, D.A., G.V.S. Kumar and A.K. Dass, 2012. Lattice boltzmann simulation of viscous flow past elliptical cylinder. CFD Lett., 4: 127-139.
  16. Perumal, D.A., G.V. Kumar and A.K. Dass, 2012. Numerical simulation of viscous flow over a square cylinder using lattice boltzmann method. ISRN Math. Phys., Vol. 2012. 10.5402/2012/630801.
    CrossRef  |  Direct Link  |  
  17. Perumal, D.A., 2012. Simulation of flow in two-sided lid-driven deep cavities by finite difference method. J. Applied Sci. Thermodynamics Fluid Mech., 6: 1-6.
  18. Perumal, D.A. and A.K. Dass, 2011. Multiplicity of steady solutions in two- dimensional lid-driven cavity flows by the lattice Boltzmann method. Comput. Math. Applic., 61: 3711-3721.
    CrossRef  |  
  19. Perumal, D.A., G.V.S. Kumar and A.K. Dass, 2010. Application of lattice boltzmann method to fluid flows in microgeometries. CFD Lett., 2: 75-84.
  20. Perumal, D.A. and A.K. Dass, 2010. Simulation of incompressible flows in two-sided lid-driven square cavities. Part II-FDM. CFD Lett., 2: 25-38.
  21. Perumal, D.A. and A.K. Dass, 2010. Simulation of incompressible flows in two-sided lid-driven square cavities. Part I-FDM. CFD Lett., 2: 13-24.
  22. Perumal, D.A., V. Krishna, G. Sarvesh and A.K. Dass, 2009. Numerical simulation of gaseous microflows by lattice Boltzmann method. Int. J. Recent Trends Eng., 1: 15-20.
    Direct Link  |  
  23. Perumal, D.A. and A.K. Dass, 2009. Simulation of Incompressible Thermal Flows by Lattice Boltzmann Method. In: Modelling and Simulation in Computational Mechanics: Engineering Applications, Panigrahi, S.K. (Ed.). Lambert Academic Publishers, Germany, ISBN: 978-3-8383-0694-0, pp: 64-73.
  24. Perumal, D.A. and A.K. Dass, 2008. Simulation of Flow in Lid-Driven Square Cavities by the Lattice Boltzmann Method. In: Advances in Fluid Mechanics VII, Rahman, M. and ‎C.A. Brebbia (Eds.). Oxford University Press, United Kingdom, ISBN: 978-1-84564-109-2, pp: 45-54.