Qi Cong, Yang Liyuan, Wang Guiqing
School of Electrical and Power Engineering, China University of Mining and Technology, Xuzhou, 221116, China.
Nanoscale Res Lett. 2017 Dec;12(1):326. doi: 10.1186/s11671-017-2095-8. Epub 2017 May 4.
The natural convection heat transfer of horizontal rectangle enclosures with different aspect ratios (A = 2:1 and A = 4:1) filled with Ag-Ga nanofluid (different nanoparticle volume fractions φ = 0.01, φ = 0.03, φ = 0.05 and radiuses r = 20 nm, r = 40 nm, r = 80 nm) at different Rayleigh numbers (Ra = 1 × 10 and Ra = 1 × 10) is investigated by a two-phase lattice Boltzmann model. It is found that the Nusselt number enhancement ratios of two enclosures (A = 2:1 and A = 4:1) filled with Ag-Ga nanofluid (r = 20 nm) are the same compared with those of the water at the corresponding aspect ratio enclosure. The more flat horizontal rectangular enclosure (A = 4:1) has the higher Nusselt number than the less flat horizontal rectangular enclosure (A = 2:1). It is also found that Nusselt number increases with the decreasing nanoparticle radius. Nusselt number enhancement ratios for every nanoparticle radius reducing by half at high Rayleigh number are higher than those at low Rayleigh number in most cases. The interaction forces between particles are also investigated in this paper. It is found that the Brownian force F is about two magnitudes greater than that of drag force F , and the value of driving force F in A = 4:1 enclosure is about twice the value of driving force F in A = 2:1 enclosure while other forces are almost the same.
采用两相格子玻尔兹曼模型,研究了不同纵横比(A = 2:1和A = 4:1)的水平矩形腔内填充Ag-Ga纳米流体(不同纳米颗粒体积分数φ = 0.01、φ = 0.03、φ = 0.05以及半径r = 20 nm、r = 40 nm、r = 80 nm)在不同瑞利数(Ra = 1×10和Ra = 1×10)下的自然对流换热情况。研究发现,与相应纵横比的水相比,填充Ag-Ga纳米流体(r = 20 nm)的两个矩形腔(A = 2:1和A = 4:1)的努塞尔数增强比相同。更扁平的水平矩形腔(A = 4:1)比不太扁平的水平矩形腔(A = 2:1)具有更高的努塞尔数。还发现努塞尔数随纳米颗粒半径的减小而增加。在大多数情况下,高瑞利数下每个纳米颗粒半径减半时的努塞尔数增强比高于低瑞利数下的增强比。本文还研究了颗粒间的相互作用力。结果发现,布朗力F比曳力F大两个量级左右,A = 4:1矩形腔内的驱动力F值约为A = 2:1矩形腔内驱动力F值的两倍,而其他力几乎相同。