Influences of Stefan blowing on unsteady flow of Casson nanofluid past a stretching surface

IF 3.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Saheb Konai, Hiranmoy Maiti, Swati Mukhopadhyay
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引用次数: 0

Abstract

This paper deals with the flow of non-Newtonian nanoliquid past an unsteady stretched exterior in attendance of Stefan blowing/suction. Model for Casson liquid has been taken into account to represent the non-Newtonian liquid. Two phase fluid replica for nanofluid has been considered. Similarity alterations are applied to transform the leading pdes (partial differential equations) to ordinary ones. Runge–Kutta method of order four has been used to solve the altered equations numerically with the help of shooting technique. Wall shear stress, heat and mass transfer coefficients diminish with the rise in unsteadiness. Fluid's velocity and temperature are found to rise with the enhancement in Stefan blowing/suction parameter. Temperature of the fluid rises but fluid's velocity diminishes for the rising values of Casson parameter. Basically, the pertinent parameters affect the stream, warmth and accumulation transport significantly which can be viewed by the figures and tables presented here and also by their physical analysis.

斯特凡吹气对卡森纳米流体通过拉伸表面非定常流动的影响
本文研究了非牛顿纳米液体在斯蒂芬吹吸作用下通过非定常拉伸表面的流动。采用卡森液体模型来表示非牛顿液体。考虑了纳米流体的两相流体复制。采用相似度变换将导偏微分方程转化为普通偏微分方程。利用四阶龙格-库塔法,借助射击技术对变方程进行了数值求解。壁面剪应力、传热传质系数随失稳程度的增大而减小。随着风机吹吸参数的增大,流体的速度和温度均有所升高。随着卡森参数的增大,流体温度升高,流体速度减小。基本上,相关参数对气流、暖流和积累输运有显著的影响,这可以从图和表以及它们的物理分析中看出。
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
Forces in mechanics
Forces in mechanics Mechanics of Materials
CiteScore
3.50
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0.00%
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审稿时长
52 days
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