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Numerical investigation of turbulent flow heat transfer and pressure drop of AL2O3/water nanofluid in helically coiled tubes

机译:螺旋管内aL2O3 /水纳米流体湍流传热与压降的数值研究

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摘要

Passive convective heat transfer enhancement can be achieved by improving the thermo-physical properties of the working fluid, changing flow geometry or both. This work presents a numerical study to investigate the combined effect of using helical coils and nanofluids on the heat transfer characteristics and pressure losses in turbulent flow regime. The developed computational fluid dynamics models were validated against published experimental data and empirical correlations. Results have shown that combining the effects of alumina (Al2O3) nanoparticles and tube coiling could enhance the heat transfer coefficient by up to 60% compared with that of pure water in straight tube at the same Reynolds number. Also, results showed that the pressure drop in helical coils using Al2O3 nanofluid for volume fraction of 3% was six times that of water in straight tubes (80% of the pressure drop increase is due to nanoparticles addition), while the effect of Reynolds number on the pressure drop penalty factor was found to be insignificant.
机译:被动对流传热的增强可以通过改善工作流体的热物理性质,改变流动几何形状或同时实现两者来实现。这项工作提出了一个数值研究,以研究在湍流状态下使用螺旋线圈和纳米流体对传热特性和压力损失的综合影响。针对已发布的实验数据和经验相关性验证了开发的计算流体动力学模型。结果表明,与纯水在相同雷诺数下的纯水相比,结合氧化铝(Al2O3)纳米颗粒和管卷的作用可以将传热系数提高多达60%。此外,结果表明,使用体积分数为3%的Al2O3纳米流体的螺旋线圈的压降是直管中水的六倍(压降增加的80%是由于添加了纳米颗粒),而雷诺数的影响发现压降损失因子的影响微不足道。

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