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Energy Balance Approach to Study the Role of Perspiration in Heat Distribution of Human Skin.


ABSTRACT: This paper develops a model to identify the role of perspiration in temperature distribution of human skin. The model has been solved by using the energy balance equation on the surface of human skin. The role played by thermal conductance, convection, and heat radiation during heat transfer in human skin has been considered, and the relevant laws such as Fourier law for conduction, Newton's Law for convection, and Stefan-Boltzmann's law for radiation have been used in the model. Pennes' bioheat equation has been employed to estimate the heat flow in the dermal region of skin including subcutaneous tissue.

SUBMITTER: Mir A 

PROVIDER: S-EPMC7085351 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Energy Balance Approach to Study the Role of Perspiration in Heat Distribution of Human Skin.

Mir Aijaz A   Almanjahie Ibrahim M IM   Dar Javid Gani JG  

Computational and mathematical methods in medicine 20200309


This paper develops a model to identify the role of perspiration in temperature distribution of human skin. The model has been solved by using the energy balance equation on the surface of human skin. The role played by thermal conductance, convection, and heat radiation during heat transfer in human skin has been considered, and the relevant laws such as Fourier law for conduction, Newton's Law for convection, and Stefan-Boltzmann's law for radiation have been used in the model. Pennes' bioheat  ...[more]

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