Combined convective and viscous dissipation effects on peristaltic flow of Ellis fluid in non uniform tube

IF 1.2 Q3 ENGINEERING, MARINE
M. M. Channakote, V. D. Kalse
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引用次数: 0

Abstract

Abstract: This paper investigates the peristaltic transport of Ellis fluid in a non-uniform tube with combined/individual effects of convective and viscous dissipation analytically. Low Reynolds number and long-wavelength approximation assumptions are considered in the analysis. An examination of the properties of the walls is also carried out. The expressions for velocity, temperature profile, and stream function are obtained subjected to convective boundary conditions. The peristaltic transport's significant characteristics are delineated with plots for various Ellis fluid parameter values. The viscous dissipation effects are found to be related to the Brinkman number, so it leads to rising fluid temperature in all cases.
非均匀管中Ellis流体蠕动流动的对流和粘性联合耗散效应
摘要:本文分析研究了Ellis流体在非均匀管中的蠕动输运,并考虑了对流和粘性耗散的组合/单独效应。分析中考虑了低雷诺数和长波长近似假设。还对墙壁的性能进行了检查。在对流边界条件下,得到了速度、温度分布和流函数的表达式。蠕动传输的显著特征用各种埃利斯流体参数值的曲线图描绘。粘性耗散效应与Brinkman数有关,因此在所有情况下都会导致流体温度上升。
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
CiteScore
2.50
自引率
5.60%
发文量
0
审稿时长
20 weeks
期刊介绍: TJPRC: Journal of Naval Architecture and Marine Engineering (JNAME) is a peer reviewed journal and it provides a forum for engineers and scientists from a wide range of disciplines to present and discuss various phenomena in the utilization and preservation of ocean environment. Without being limited by the traditional categorization, it is encouraged to present advanced technology development and scientific research, as long as they are aimed for more and better human engagement with ocean environment. Topics include, but not limited to: marine hydrodynamics; structural mechanics; marine propulsion system; design methodology & practice; production technology; system dynamics & control; marine equipment technology; materials science; under-water acoustics; satellite observations; and information technology related to ship and marine systems; ocean energy systems; marine environmental engineering; maritime safety engineering; polar & arctic engineering; coastal & port engineering; aqua-cultural engineering; sub-sea engineering; and specialized water-craft engineering. International Journal of Naval Architecture and Ocean Engineering is published quarterly by the Society of Naval Architects of Korea. In addition to original, full-length, refereed papers, review articles by leading authorities and articulated technical discussions of highly technical interest are also published.
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