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首页> 外文期刊>Journal of thermal analysis and calorimetry >Effects of nonhomogeneous nanofluid model on convective heat transfer in partially heated square cavity with conducting solid block
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Effects of nonhomogeneous nanofluid model on convective heat transfer in partially heated square cavity with conducting solid block

机译:非均质纳米流体模型对具有导电固体块部分加热方腔对流热传递的影响

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In this study, the conjugate natural convection in a square cavity filled with Al2O3-water nanofluid with an inner conducting solid block is studied numerically using nonhomogeneous Buongiorno's two-phase model. The left wall of the cavity is partially heated and the remaining parts of the wall are adiabatic, while the right wall is fully cooled. The top and bottom horizontal walls are adiabatic. The numerical simulations are based on the finite difference method. The results are simulated for various values of the nanoparticle volume fraction (0 <= phi <= 0.04), Rayleigh number (10(2) <= Ra <= 10(6)), thermal conductivity of the conjugate square (k(w)=0.28,0.76,1.95,7.0) and 16.0 (epoxy: 0.28, brickwork: 0.76, granite: 1.95, solid rock: 7, stainless steel: 16), the size of the inner solid (0 <= D <= 0.7), and the length of the heater (0.1 <= H <= 1.0). The numerical results for the average and local Nusselt numbers, isotherms, distribution of nanoparticles, and streamlines are presented graphically. The findings indicate that increasing the average solid volume fraction and the size of the solid block as well as the thermal conductivity will enhance the rate of the heat transfer at low values of Rayleigh number Ra=10(3). On the other hand, increasing these parameters at high values of Rayleigh number (Ra > 10(5)) decreases the average Nusselt number.
机译:在这项研究中,使用非均匀Buongiorno的两相模型进行了用内部导电固体嵌段的填充有Al2O3水纳米流体的方腔中的共轭自然对流。部分加热腔的左壁,壁的剩余部分是绝热的,而右壁完全冷却。顶部和底部水平墙是绝热的。数值模拟基于有限差分法。纳米颗粒体积分数的各种值模拟结果(0 <= PHI <= 0.04),瑞利数(10(2)<= RA <= 10(6)),共轭正方形的导热率(K(W. )= 0.28,0.76,1.95,7.0)和16.0(环氧:0.28,砖砌:0.76,花岗岩:1.95,固体岩石:7,不锈钢:16),内固定的尺寸(0 <= D <= 0.7 ),加热器的长度(0.1 <= h <= 1.0)。图示出了平均值和局部露珠数,等温线,纳米颗粒分布和流线的数值结果。结果表明,增加平均固体体积分数和固体块的尺寸以及导热率的尺寸将增强瑞利·Ra = 10(3)的低值下的热传递速率。另一方面,在瑞利数的高值下增加这些参数(RA> 10(5))降低了平均营养数。

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