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Multi-Physics Analysis of Unsteady Free Convective Flows with Heat Generation, Thermal Stratification, and Radiation Effects in Porous Media

Dr Madhava Reddy Ch

Subject area: Science,Engineering and Technology  ·  Area of research: Heat Generation

Abstract

This research paper investigates the complex interplay of multiple physical phenomena in unsteady free convective flows within porous media. The study explores the impact of heat generation, thermal stratification, and radiation on fluid dynamics and heat transfer. The work incorporates insights from previous research to comprehensively analyze the coupled effects of these phenomena.

References

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[2] D.Srinivasacharya and M.Upender: Thermal radiation and chemical reaction effects on magnetohydrodynamic free convection heat and mass transfer in a micropolar fluid. Turkish J Eng Env Sci ,38: 184-196 (2014).

[3] Arpita Jain: Radiation and chemical reaction effects on unsteady double diffusive convective flow past an oscillating surface with constant heat flux. ISRN Chemical Engineering, 2013, Article ID 846826, 8 pages.

[4] B.W.martin: Free convection in a vertical cylinder with internal heat generation. Proc. Roy. Soc. A. 301, 327-341 (1967).

[5] Md. Abdul Alim, Md. Rezaul Karim and Md. Miraj Akand: Heat generation effects on MHD natural convection flow along a vertical wavy

[6] D.A. Nield, and A. Bejan: Convection in porous media, Science and Technology, Springer, 2013

[7] A. Nakayama and H. Koyama: Effect of thermal stratification on free convection within a porous medium. J. Thermophysics and Heat Transfer, 1(3), 282-285, 1987.

[8] P.V.S.N. Murthy, D. Srinivasacharya and P.V.S.S.S.R. Krishna: Effect of double stratification on free convection in a Darcian porous medium. J. Heat Transfer 126(2), 297-300, 2004

[9] D. Srinivasacharya and Ch. RamReddy: Free convective heat and mass transfer in a doubly stratified non-Darcy micropolar fluid. Korean J. Chem. Eng., 28(9), 1824-1832, 2011

[10] R.K. Deka and A.Paul: Transient free convection flow past infinite vertical cylinder with thermal stratification. J. of Mechanical Science and Engineering, 26(8), 2229-2237, 2012.

[11] DR MADHAVA REDDY CH on Brinkman Model for Unsteady Flow with Heat Generation, IRE Journals, (2018) , 2456-8880

[12] Madhava Reddy Ch, ScienceDirect, International Conference on Computational Heat and Mass Transfer-2015 , Procedia Engineering 127 (2015) 140 – 147

[13] DR MADHAVA REDDY CH on Unsteady Flow of a Stratified Fluid with Radiation, IRE Journals, (2019), 2456-8880

How to cite this paper

Dr Madhava Reddy Ch "Multi-Physics Analysis of Unsteady Free Convective Flows with Heat Generation, Thermal Stratification, and Radiation Effects in Porous Media" Iconic Research And Engineering Journals Volume 2 Issue 5 2018 Page 197-200
Dr Madhava Reddy Ch "Multi-Physics Analysis of Unsteady Free Convective Flows with Heat Generation, Thermal Stratification, and Radiation Effects in Porous Media" Iconic Research And Engineering Journals, vol. 2, no. 5, Nov. 2018
Dr Madhava Reddy Ch (2018). Multi-Physics Analysis of Unsteady Free Convective Flows with Heat Generation, Thermal Stratification, and Radiation Effects in Porous Media. Iconic Research And Engineering Journals, 2(5).
Dr Madhava Reddy Ch "Multi-Physics Analysis of Unsteady Free Convective Flows with Heat Generation, Thermal Stratification, and Radiation Effects in Porous Media" Iconic Research And Engineering Journals, vol. 2, no. 5, Nov. 2018.
@article{1700783,
      author = {Dr Madhava Reddy Ch},
      title = {Multi-Physics Analysis of Unsteady Free Convective Flows with Heat Generation, Thermal Stratification, and Radiation Effects in Porous Media},
      journal = {Iconic Research And Engineering Journals},
      year = {2018},
      volume = {2},
      number = {5},
      pages = {197-200},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1700783.pdf},
      abstract = {This research paper investigates the complex interplay of multiple physical phenomena in unsteady free convective flows within porous media. The study explores the impact of heat generation, thermal stratification, and radiation on fluid dynamics and heat transfer. The work incorporates insights from previous research to comprehensively analyze the coupled effects of these phenomena.},
      month = {November},
  }