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Modeling of a Solar Water Collector with Water-Based Nanofluid Using Nanoparticles

机译:基于水的纳米流体的纳米粒子对太阳能集热器的建模

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摘要

The pressure-velocity form of the Navier-Stokes equations, energy equation, and concentration equation are used to represent the mass, momentum, energy, and concentration conservations of the nanofluid medium in the solar collector. The governing equations and corresponding boundary conditions are converted to dimen-sionless form and solved numerically by the finite element method. The physical domain is discretized by triangular mesh elements with six nodes. The working fluid is water-based nanofluid with two nanoparticles, namely, silver (Ag) and copper oxide (CuO). The study includes computations for different values of buoyancy ratio (Nr) and Schmidt number (Sc). Flow, heat, and mass transfer characteristics are presented in the forms of streamlines, isotherms, and iso-concentrations. In addition, results for the average radiative, convective heat and mass transfer, mean temperature and concentration of nanofluid, mid-height horizontal-vertical velocities, and subdomain average velocity field are offered and discussed for the above-mentioned parametric conditions. Results show that the effects of Nr and Sc on the convective-radiative heat and mass transfer phenomenon inside the collector are significant for all values of Nr and Sc studied. Comparison and validation with the standard experimentalumerical data is given in brief. The variation of the obtained result is presented as 34% with the result of experimental data.
机译:Navier-Stokes方程,能量方程和浓度方程的压力-速度形式用于表示太阳能收集器中纳米流体介质的质量,动量,能量和浓度守恒。将控制方程和相应的边界条件转换为无量纲形式,并通过有限元方法进行数值求解。物理域由具有六个节点的三角形网格元素离散化。工作流体是具有两个纳米粒子的水基纳米流体,即银(Ag)和氧化铜(CuO)。该研究包括针对不同的浮力比(Nr)和施密特数(Sc)的计算。流动,传热和传质特性以流线,等温线和等浓度形式表示。此外,针对上述参数条件,提供并讨论了平均辐射,对流传热和传质,纳米流体的平均温度和浓度,中等高度的水平垂直速度以及子域平均速度场的结果。结果表明,对于所有研究的Nr和Sc值,Nr和Sc对集热器内部对流辐射传热和传质现象的影响都很显着。简要给出了与标准实验/数值数据的比较和验证。实验数据表明,所得结果的差异为34%。

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