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Bio-fluid flow analysis based on heat transfer and variable viscosity

Bio-fluid flow analysis based on heat transfer and variable viscosity
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摘要 This study investigates the cilia transport phenomenon from the perspectives of the heat transfer and variable viscosity in a bending channel. The rightward wall is maintained at a temperature of T0, and the leftward wall has a temperature of T1. Each wall has a metachronal wave that travels along its wall. The structures of the ciliary assemblies are calculated by the well-known simplifying suppositions of the large wavelength and the small Reynolds number approximation. The flow phenomenon for the Newtonian fluid is described as a function of cilia and a metachronal wave velocity. The pressure rise is calculated with MATHEMATICA. The theme of the cilia beating flow is inspected with scheming plots, and its features are discussed at the end of the article. This study investigates the cilia transport phenomenon from the perspectives of the heat transfer and variable viscosity in a bending channel. The rightward wall is maintained at a temperature of T0, and the leftward wall has a temperature of T1. Each wall has a metachronal wave that travels along its wall. The structures of the ciliary assemblies are calculated by the well-known simplifying suppositions of the large wavelength and the small Reynolds number approximation. The flow phenomenon for the Newtonian fluid is described as a function of cilia and a metachronal wave velocity. The pressure rise is calculated with MATHEMATICA. The theme of the cilia beating flow is inspected with scheming plots, and its features are discussed at the end of the article.
作者 H.SADAF
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第7期1029-1040,共12页 应用数学和力学(英文版)
关键词 cilia-driven flow curved channel temperature dependent VISCOSITY metachronal wave heat transfer EXACT solution cilia-driven flow curved channel temperature dependent viscosity metachronal wave heat transfer exact solution
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