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首页> 外文期刊>Journal of thermal analysis and calorimetry >Numerical study of flow and heat transfer of water-Al2O3 nanofluid inside a channel with an inner cylinder using Eulerian-Lagrangian approach
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Numerical study of flow and heat transfer of water-Al2O3 nanofluid inside a channel with an inner cylinder using Eulerian-Lagrangian approach

机译:用欧拉 - 拉格朗日方法用内筒与内筒沟道流动和热传递的数值研究

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摘要

The present paper is a numerical study on heat transfer and pressure drop of a nanofluid including water as base fluid with Al2O3 nanoparticles inside a square channel having an inner cylinder, with and without fin under constant heat flux condition using two-phase Euler-Lagrange approach. Numerical investigation has been carried out for various combinations of base fluid, nanoparticle size and concentration through a straight cylinder. Simulation has been performed in a laminar flow regime using finite volume method. Besides, the thermal boundary condition of constant uniform heat flux on the channel wall was applied. The results show that the increase in Reynolds number and nanoparticle volume concentration have considerable effects on heat transfer coefficient enhancement. The heat transfer coefficient decreases when nanoparticles diameter increases. The passive way used in this study, leads to higher pressure drops. For all fluids under consideration, pressure drop escalates with Reynolds number. Adding nanoparticles to the base fluid leads to rise in pressure drop, and this effect is more intensive for higher concentrations.
机译:本文是一种关于纳米流体的热传递和压力下降的数值研究,包括水作为基础流体的碱性流体,其在方筒内部,在具有内筒,在恒定的热通量条件下,使用两相欧拉拉格兰朗法方法。通过直筒进行了基础流体,纳米粒子尺寸和浓度的各种组合进行了数值研究。使用有限体积法在层流动状态下进行了模拟。此外,施加了沟道壁上恒定均匀热通量的热边界条件。结果表明,雷诺数和纳米颗粒体积浓度的增加对传热系数增强具有相当大的影响。当纳米颗粒的直径增加时,传热系数降低。本研究中使用的被动方式导致更高的压降。对于所考虑的所有液体,压降与雷诺数升级。向基础流体中加入纳米颗粒导致压降升高,并且这种效果更加强烈,对于更高的浓度。

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