Influence of complete slip conditions on peristaltic transport of third-grade fluid with suction and injection

IF 2.6 4区 物理与天体物理 Q2 PHYSICS, APPLIED International Journal of Modern Physics B Pub Date : 2023-12-08 DOI:10.1142/s0217979224400058
R. Lakshmi, A. Kavitha
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Abstract

This study is important for the fields of pharmaceutical nano-drug suspension, biomedical engineering, pressure surges and food processing systems. The slip condition is necessary for polishing internal cavities and artificial heart valves in a variety of manufactured objects, micro- or nano-channels, and applications. Low Reynolds number (Re[Formula: see text] and long wavelength ([Formula: see text]) considerations are used in the formulation of the mathematical model at low non-Newtonian parameter values, nonlinear boundary conditions and the governing nonlinear equation are analytically solved using the perturbation method. The graphs of frictional force, pressure rise, velocity, pressure gradient, and streamline graphs are done using Wolfram MATHEMATICA software. In this paper, we compared the results of the total slip condition with those of the first-order slip condition and the absence of any slip effects. It has been noticed that increasing the suction and injection parameters leads to a decrease the pressure rate with complete slip effects, partial slip effects and no slip effects. We show that an increase in the third grade fluid parameter [Formula: see text] increases the magnitude of axial velocity. From a physical perspective, it shows the shear thinning characteristic, which causes a decrease in viscosity and an increase in fluid velocity. Frictional force behaves differently when compared to pressure rate. In other words, the pressure gradient acts as an obstacle to the peristalsis-driven flow. The objective of the study is to find the impact of the peristaltic flow phenomena and the impact of peristaltic on third-grade non-Newtonian fluid where the suction and injection are prevailing which is similar to the thing in biomechanical devices, like blood vessels, etc. there is a change of oxygen and carbon dioxide from the tissue layer to the fluid within the blood vessel.
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完全滑移条件对带吸入和注入的第三级流体蠕动输送的影响
该研究对纳米药物悬浮液、生物医学工程、压力波动和食品加工系统等领域具有重要意义。滑移条件是抛光内腔和人工心脏瓣膜在各种制造对象,微或纳米通道,和应用所必需的。在低非牛顿参数值下,考虑低雷诺数(Re[公式:见文])和长波长([公式:见文]),采用微扰法解析求解非线性边界条件和非线性控制方程。利用Wolfram MATHEMATICA软件绘制摩擦力图、升压图、速度图、压力梯度图和流线图。在本文中,我们比较了全滑移条件下的结果与一阶滑移条件下的结果以及没有任何滑移效应的结果。注意到,增大吸注参数会导致压力速率的降低,包括完全滑移效应、部分滑移效应和无滑移效应。我们表明,三级流体参数[公式:见文]的增加增加了轴向速度的大小。从物理角度来看,它表现出剪切变薄的特性,导致粘度降低,流体速度增加。摩擦力与压力率相比表现不同。换句话说,压力梯度对蠕动驱动的流动起着阻碍作用。本研究的目的是寻找蠕动流动现象的影响,以及蠕动对第三级非牛顿流体的影响,其中吸引和注射盛行,类似于生物力学装置,如血管等,氧气和二氧化碳从组织层到血管内流体的变化。
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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来源期刊
International Journal of Modern Physics B
International Journal of Modern Physics B 物理-物理:凝聚态物理
CiteScore
3.70
自引率
11.80%
发文量
417
审稿时长
3.1 months
期刊介绍: Launched in 1987, the International Journal of Modern Physics B covers the most important aspects and the latest developments in Condensed Matter Physics, Statistical Physics, as well as Atomic, Molecular and Optical Physics. A strong emphasis is placed on topics of current interest, such as cold atoms and molecules, new topological materials and phases, and novel low dimensional materials. One unique feature of this journal is its review section which contains articles with permanent research value besides the state-of-the-art research work in the relevant subject areas.
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