首页> 外文期刊>Computer Methods and Programs in Biomedicine: An International Journal Devoted to the Development, Implementation and Exchange of Computing Methodology and Software Systems in Biomedical Research and Medical Practice >A mathematical framework for peristaltic flow analysis of non-Newtonian Sisko fluid in an undulating porous curved channel with heat and mass transfer effects
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A mathematical framework for peristaltic flow analysis of non-Newtonian Sisko fluid in an undulating porous curved channel with heat and mass transfer effects

机译:具有热量传递效应的起伏多孔弯曲通道中非牛顿Sisko流体蠕动流动分析的数学框架

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摘要

Background and objective: Peristaltic is one of the most frequently occurring phenomenon in biological systems. These systems of the human body (especially digestive, reproductive, respiratory, renal system) generally involve effects of curvature, porosity, rheology and heat transfer. Thus, in the present investigation we integrate heat transfer phenomenon with Sisko fluid flowing through porous medium bounded within curved wavy walls. The theoretical analysis presented under long wavelength approximation serves as a model for the creeping non-isothermal flow of blood through a diseased segment of the artery due to vasomotion (peristaltic motion) in the artery.
机译:背景和目的:蠕动是生物系统中最常见的现象之一。 这些人体(特别是消化,生殖,呼吸道,肾体系)的系统通常涉及曲率,孔隙,流变和传热的影响。 因此,在本研究中,我们将传热现象与流动流过弯曲波状壁内的多孔介质流过的传热现象。 在长波长近似下提出的理论分析用作通过动脉中的血管定向(蠕动运动)引起的动脉患病的患者嗜血的非等温流动的模型。

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