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对配备螺旋扭曲带作为旋流和湍流促进器的管内热工水力特性及层流两相纳米流体流动进行数值分析。

Numerical analysis for thermal-hydraulic characteristics and the laminar two-phase nanofluid flow inside a tube equipped with helically twisted tapes as swirl and turbulence promoters.

作者信息

Kalani Iman, Toghraie Davood

机构信息

Department of Mechanical Engineering, Khomeinishahr Branch, Islamic Azad University, Khomeinishahr, Iran.

出版信息

Sci Rep. 2021 Jun 9;11(1):12228. doi: 10.1038/s41598-021-91699-x.

Abstract

In this study, the numerical simulation of heat transfer of AlO-water nanofluid in a pipe equipped with helically twisted tapes is investigated. The volume fraction of nanoparticles in this study is equal to 0, 1, 2, and 3%, and a two-phase mixture method has been used to simulate the nanofluids. The flow regime is laminar in the present study, and Reynolds numbers are Re = 250, 500, 750, and 1000. The helical twisted tapes are in three different types, single, double, and triple. The same heat flux 5000Wm is applied to the walls. The simulation results showed that increasing the Re increases the Nusselt number and decreasing the friction factor. Nusselt number in case 1 and volume fraction of nanoparticles 0% for Re = 250, 500, 750 and 1000 are equal to 95.8, 57.11, 56.13 and 22.15, respectively. The average friction factor is equal to 0.18, 0.09, 0.07, and 0.05. The presence of helical twisted tapes increases the [Formula: see text]. The friction factor due to secondary flows and increases the contact of the fluid and the solid surface, so that the Nusselt number in volume fraction of nanoparticles 0%, Re = 250 for case 1, case 2, case 3, and case 4 are 95.8, 46.10, 58.11, and 51.12, respectively, and the friction factor are 18.0, 29.0, 0.38 and 0.48, respectively.

摘要

在本研究中,对装有螺旋扭带的管道内AlO-水纳米流体的传热进行了数值模拟。本研究中纳米颗粒的体积分数分别为0%、1%、2%和3%,并采用两相混合法对纳米流体进行模拟。本研究中的流动状态为层流,雷诺数分别为Re = 250、500、750和1000。螺旋扭带有单、双、三三种不同类型。对管壁施加相同的热通量5000W/m²。模拟结果表明,增加雷诺数会增加努塞尔数并降低摩擦系数。对于Re = 250、500、750和1000,情况1且纳米颗粒体积分数为0%时的努塞尔数分别等于95.8、57.11、56.13和22.15。平均摩擦系数分别等于0.18、0.09、0.07和0.05。螺旋扭带的存在增加了[公式:见原文]。由于二次流导致摩擦系数增加,并且增加了流体与固体表面的接触,使得纳米颗粒体积分数为0%、Re = 250时,情况1、情况2、情况3和情况4的努塞尔数分别为95.8、46.10、58.11和51.12,摩擦系数分别为18.0、29.0、0.38和0.48。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1dc/8190086/eca6bdeb294c/41598_2021_91699_Fig1_HTML.jpg

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