Numerical Study of Transient Bio-Heat Transfer Model With Heat Transfer Coefficient and Conduction Effect in Cylindrical Living Tissue

K. Luitel, D. B. Gurung, H. Khanal, K. N. Uprety
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引用次数: 4

Abstract

The human thermal comfort is affected by the body’s heat exchange mechanism conduction, convection, radiation, and evaporation. The mode of heat transfer between the body and environment depends upon the human internal physiological phenomena, together with the boundary conditions. The present paper provides the comprehensive overview of the thermoregulatory system of human body and studies the numerical solution of unsteady-state one dimensional Pennes bio-heat equation with appropriate boundary conditions. The solution is used to observe the temperature profiles at different thermal conductivities, and different heat transfer coefficients in the living tissue at the various time steps. Various physical and physiological factors across the cylindrical living tissue have been incorporated in the model.
考虑传热系数和传导效应的圆柱形活体组织瞬态生物传热模型的数值研究
人体热舒适受人体传导、对流、辐射、蒸发等热交换机制的影响。人体与环境之间的热传递方式取决于人体内部的生理现象和边界条件。本文全面介绍了人体体温调节系统,研究了具有适当边界条件的非稳态一维Pennes生物热方程的数值解。用该溶液观察了活组织在不同热导率下的温度分布,以及不同时间步长的换热系数。各种物理和生理因素跨越圆柱形活组织已纳入模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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