Topic
Thermal radiation
About: Thermal radiation is a research topic. Over the lifetime, 12290 publications have been published within this topic receiving 197186 citations. The topic is also known as: heat radiation.
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TL;DR: In this article, the authors dealt with the thermal radiation and hall effects on peristaltic blood flow with double diffusive convection of gold nanoparticles through an asymmetric channel under the long wavelength and low Reynolds number assumptions.
66 citations
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TL;DR: In this paper, an electromagnetic finite element method is proposed to evaluate the losses generated in the conductors and in the steels, these are then used as the heat sources for thermal analysis.
66 citations
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Abstract: In this paper, a theoretical analysis is presented for magnetohydrodynamic flow of blood in a capillary, its lumen being porous and wall permeable The unsteadiness in the flow and temperature fields is caused by the time-dependence of the stretching velocity and the surface temperature Thermal radiation, velocity slip and thermal slip conditions are taken into account In order to study the flow field as well as the temperature field, the problem is formulated as a boundary value problem consisting of a system of nonlinear coupled partial differential equations The problem is analysed by using similarity transformation and boundary layer approximation Solution of the problem is achieved by developing a suitable numerical method and using high speed computers Computational results for the variation in velocity, temperature, skin-friction co-efficient and Nusselt number are presented in graphical/tabular form Effects of different parameters are adequately discussed Since the study takes care of thermal radiation in blood flow, the results reported here are likely to have an important bearing on the therapeutic procedure of hyperthermia, particularly in understanding/regulating blood flow and heat transfer in capillaries
66 citations
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TL;DR: In this paper, a two-dimensional hydromagnetic free convection and thermal radiation flow of an electrically conducting viscous-incompressible fluid through a highly porous medium bounded by a vertical plane surface of constant temperature is presented.
66 citations
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TL;DR: In this article, a numerical study of combined natural convection and surface radiation heat transfer in a solar trapezoidal cavity absorber for Compact Linear Fresnel Reflector (CLFR) is presented.
66 citations