黏性耗散(<i>Φ</i>)对磁场存在下血浆温度分布的影响

Lilian Moraa Moseti, Joash Kerongo, Vincent Bulinda
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引用次数: 0

摘要

热传递的应用显示了身体温度的变化,这有助于热疗法治疗肿瘤腺体的目的。本研究采用理论方法分析了粘性耗散对血浆在非对称动脉段内流动的温度分布的影响。认为等离子体在二维流动中是非均匀动脉段的非定常、层流和不可压缩流体。用有限差分格式(FDS)求解了控制血浆的耦合偏微分方程的数值格式。利用有限差分法和相关的边界条件,得到了温度分布的结果。研究了粘性耗散对动脉血浆温度的影响。利用MATLAB软件对方程进行了求解,并以图形和表格的形式给出了求解结果。黏性耗散的增加往往会降低血浆热分布。本研究将在医院中得到重要应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Viscous Dissipation (&lt;i&gt;Φ&lt;/i&gt;) on Temperature Distribution of Blood Plasma in Presence of a Magnetic Field
Applications of heat transfer show the variations in temperature of the body which is helpful for the purpose of thermal therapy in the treatment of tumor glands. This study considered theoretical approaches in analyzing the effect of viscous dissipation on temperature distribution on the flow of blood plasma through an asymmetric arterial segment. The plasma was considered to be unsteady, laminar and an incompressible fluid through non-uniform arterial segment in a two-dimensional flow. Numerical schemes developed for the coupled partial differential equations governing blood plasma were solved using Finite Difference scheme (FDS). With the aid of the finite difference approach and the related boundary conditions, results for temperature profiles were obtained. The study determined the effect of viscous dissipation on temperature of blood plasma in arteries. The equations were solved using MATLAB softwares and results were presented graphically and in tables. The increase in viscous dissipation tends to decrease blood plasma heat distribution. This study will find important application in hospitals.
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