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Effects of Wall Slip on Convective Heat Transfers of Giesekus Fluid in Microannulus

机译:壁壁对微宣传中Giesekus液对流热转移的影响

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摘要

Convective heat transfer and effect of nonlinear wall slip are studied analytically in concentric microannulus for viscoelastic fluids obeying the Giesekus constitutive equation. Laminar, thermally, and hydrodynamically fully developed flow is considered. A nonlinear Navier model with nonzero slip critical shear stress is employed for the slip equation at both walls. Critical shear stress will cause three slip flow regimes: no slip condition, slip only at the inner wall, and slip at both walls. Thermal boundary conditions are assumed to be peripherally and axially constant fluxes at the walls. Governing equations are solved to obtain temperature profiles and Nusselt number and effects of slip parameters, elasticity, and Brinkman number are discussed. Two regimes are compared when slip occurs at both walls or only at the inner wall. The results indicate that by increasing slip effect and elasticity, heat transfer between wall and fluid is enhanced, but it decreases by increasing Brinkman number. In the case where the heat flux is dominant in the outer wall, the inner wall Nusselt curve shows a singularity for a critical Brinkman number because at this Brinkman number the bulk temperature will be equal to the wall temperature.
机译:对非线性壁滑的对流传热和非线性壁滑的效果在同心微野野夜进行分析,用于血糖液的粘弹性液体术语。考虑了层状,热和流体动力学完全发育的流动。两个墙壁上的滑动方程采用了具有非极滑滑动临界剪切应力的非线性导航模型。临界剪切应力将导致三个滑动流动制度:没有滑动条件,仅在内壁处滑动,并在两个墙壁处滑动。假设热边界条件在壁上是外围和轴向恒定的磁通。解决了管理方程以获得温度分布,并讨论了滑动参数,弹性和Brinkman号的露天曲线和效果。在两个墙壁上或仅在内壁处发生两个制度。结果表明,通过增加滑动效果和弹性,壁和流体之间的热传递增强,但通过增加Brinkman号码,它减少。在热通量在外壁中显着的情况下,内壁露珠曲线显示了临界Brinkman号的奇点,因为在该Brinkman号码中,散装温度将等于壁温。

著录项

  • 来源
    《Journal of Heat Transfer》 |2020年第8期|082503.1-082503.12|共12页
  • 作者单位

    Laboratoire de Physique et Chimie Theoriques (LPCT UMRCNRS UL 7019) Universite de Lorraine Rue Victor Demange Saint-Avoid 57500 France;

    INRIA Rennes Bretagne Atlantique IRMAR-UMR CNRS 6625 Avenue General Leclerc Rennes 35042 France;

    Laboratoire de Physique et Chimie Theoriques (LPCT UMR CNRS UL 7019) Universite de Lorraine Rue Victor Demange Saint-Avoid 57500 France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microannulus; Giesekus constitutive equation; slip; elasticity; viscous dissipation;

    机译:微肿ann;Giesekus组成方程;滑;弹性;粘性耗散;

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