Current Volume 10
In this research, we delve into the intricate interplay of double stratification, thermal radiation, and magnetohydrodynamic (MHD) effects on heat flux within a given system. The study is motivated by the increasing significance of understanding these complex phenomena in various scientific and engineering applications. Double stratification, a phenomenon characterized by the presence of two distinct layers with varying properties, coupled with thermal radiation and magnetohydrodynamics, plays a crucial role in shaping the heat transfer dynamics of diverse systems.
IRE Journals:
Dr Madhava Reddy Ch "Multifaceted Dynamics: Exploring the Interactions of Double Stratification, Thermal Radiation, and Magnetohydrodynamics in Heat Transfer Phenomena" Iconic Research And Engineering Journals Volume 1 Issue 5 2017 Page 67-71
IEEE:
Dr Madhava Reddy Ch
"Multifaceted Dynamics: Exploring the Interactions of Double Stratification, Thermal Radiation, and Magnetohydrodynamics in Heat Transfer Phenomena" Iconic Research And Engineering Journals, vol. 1, no. 5, Nov. 2017
APA:
Dr Madhava Reddy Ch
(2017). Multifaceted Dynamics: Exploring the Interactions of Double Stratification, Thermal Radiation, and Magnetohydrodynamics in Heat Transfer Phenomena. Iconic Research And Engineering Journals, 1(5).
MLA:
Dr Madhava Reddy Ch
"Multifaceted Dynamics: Exploring the Interactions of Double Stratification, Thermal Radiation, and Magnetohydrodynamics in Heat Transfer Phenomena" Iconic Research And Engineering Journals, vol. 1, no. 5, Nov. 2017.
@article{1700103,
author = {Dr Madhava Reddy Ch},
title = {Multifaceted Dynamics: Exploring the Interactions of Double Stratification, Thermal Radiation, and Magnetohydrodynamics in Heat Transfer Phenomena},
journal = {Iconic Research And Engineering Journals},
year = {2017},
volume = {1},
number = {5},
pages = {67-71},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1700103.pdf},
abstract = {In this research, we delve into the intricate interplay of double stratification, thermal radiation, and magnetohydrodynamic (MHD) effects on heat flux within a given system. The study is motivated by the increasing significance of understanding these complex phenomena in various scientific and engineering applications. Double stratification, a phenomenon characterized by the presence of two distinct layers with varying properties, coupled with thermal radiation and magnetohydrodynamics, plays a crucial role in shaping the heat transfer dynamics of diverse systems.},
month = {November}
}