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首页> 外文期刊>European Physical Journal Plus >Slip analysis with thermally developed peristaltic motion of nanoparticles under the influence of variable viscosity in vertical configuration
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Slip analysis with thermally developed peristaltic motion of nanoparticles under the influence of variable viscosity in vertical configuration

机译:在垂直构型可变粘度的影响下,在纳米颗粒的影响下热发育蠕动的滑移分析

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摘要

The aim of this paper is to present the analytical investigation on the peristaltic propulsion of an incompressible nanomaterial fluid passing through a two-dimensional symmetric channel. The stream flow comprises temperature dependent viscosity under the influence of mixed convection, heat transfer, temperature jump and velocity slip effects. Keeping pure water as the base fluid and using Silicon dioxide, Silver and Copper oxide as the selected nanoparticles, examination is carried out for the peristaltic transportation which has countless industrial appliances. Under the assumption of long wavelength and low Reynolds number, physical parameter effects on the exact solution established under physical boundary conditions for axial velocity, temperature profile, pumping characteristics and the trapping phenomenon are developed graphically and addressed in brief. Acquired solutions are employed to describe the influence of various emerging parameters on significant occurrences related to peristaltic propagation. The results we came across are that the axial flow velocity shows converse variations in the central part and around the walls of the channel, whereas heat transfer and thermal slip parameter increase shows rise in fluid temperature. Moreover, bolus trapping for increasing velocity slip brings improvement in both size and number for all nanoliquid particles CuO, SiO2, Ag and base fluid, whereas for rising thermal slip value, a decline in bolus size for all nonofluids occurs. However, pure water shows increment in size and number. A relative study is also reconnoitered for CuO, SiO2, Ag nanofluids and pure water.
机译:本文的目的是提出通过二维对称通道的不可压缩纳米材料蠕动推进的分析研究。流流包括在混合对流,传热,温度跳跃和速度滑移效果的影响下的温度依赖性粘度。将纯水保持为基础流体,并使用二氧化硅,银和氧化铜作为选定的纳米颗粒,对具有无数工业设备的蠕动运输进行检查。在长波长和低雷诺数的假设下,在图形上显影并简要开发了在轴向轴速度,温度曲线,泵送特性和捕获现象下建立的精确解决方案的物理参数效应。采用获得的解决方案来描述各种新兴参数对与蠕动传播相关的显着发生的影响。我们遇到的结果是轴向流速在通道的壁上和周围围绕沟道的逆转变化,而传热和热滑移参数增加显示出流体温度的上升。此外,对于增加速度净化的推注捕获为所有纳米喹吖啶颗粒CuO,SiO 2,Ag和碱流体的尺寸和数量提高,而对于升高的热滑移值,发生所有非流体的推注尺寸下降。然而,纯水显示尺寸和数量的增量。对于CuO,SiO 2,Ag纳米流体和纯水也是相对研究的相对研究。

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