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納米顆粒球形度對傾斜通道中納米流體反向混合對流傳熱的影響
尤翔程 ,,李世遠
中國石油大學(北京)石油工程學院,,北京 102249
Effect of nanoparticle sphericity on mixed convective flow of nanofluids in an inclined channel
YOU Xiangcheng, LI Shiyuan
College of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 隨著納米顆粒體積分數(shù)的增大,,平均努塞爾數(shù)向下壁面移動,其值隨 壓力參數(shù)增大而連續(xù)增大,。隨著納米顆粒球形度的增大,平均努塞爾 數(shù)值也增大,。與基液相比,,納米流體具有更好的熱物理性質和傳熱性 能。
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關鍵詞 : 納米顆粒球形度;傾斜通道,;納米流體,;混合對流
Abstract
We studied the effect of nanoparticle sphericity on the mixed convective flow of nanofluids in an inclined channel,  
and the influence of different nanoparticle sphericity and nanoparticle volume fraction on the physical parameters of fluid  
flow and heat transfer has also been presented. The governing ordinary differential equations are dimensionless and solved  
analytically. The explicit distributions of velocity, temperature and pressure are obtained. The effect of the flow reversal of the  
nanofluid, the average wall friction coefficient and the average Nusselt number of the nanofluid depends on the nanoparticle
sphericity, the nanoparticle volume fraction and the pressure parameters. The results show that the volume fraction of  
nanoparticles plays a key role in delaying the occurrence of countercurrent flow. The nanofluid has a larger delay range , about  
2.2 times that of the base fluid. At the same time, the value of nanoparticles increases with the increase of sphericity. The  
effect of nanoparticle volume fraction on velocity and temperature distribution is significant. With the increase of its value,  
the nanofluid delays the velocity reduction near the upper and lower walls compared with the base fluid. At the same time,  
the wall temperature decreases with an increase of the sphericity of nanoparticles. With an increase of the volume fraction  
of nanoparticles, the average wall friction coefficient of the nanofluid increases. This is independent of the sphericity of  
nanoparticles and the dimensionless pressure parameter P 2 , and decreases monotonically with an increase of P 1 . The average  
Nusselt number is related to the sphericity of nanoparticles, the volume fraction of nanoparticles and the dimensionless  
pressure parameter P 2 . With an increase of the sphericity of nanoparticles, the average Nusselt value also increases. This paper  
analyzes the application of nano microspheres in petroleum engineering, studies the transfer mechanism of mixed convection  
of nano particles in inclined channels, and analyzes the effects of different nano particle sphericity and nano particle volume  
fraction on the physical parameters of fluid flow and heat transfer. It can provide theoretical support for subsequent parameter  
selection of nanospheres in enhanced oil recovery.


Key words: nanoparticle sphericity; inclined channel; nanofluids; mixed convection
收稿日期: 2021-12-29 ????
PACS: ? ?
基金資助:國家自然科學基金(12002390)、國家自然科學基金(51704307) 和中國石油大學( 北京) 科研基金資助(ZX20200119) 聯(lián)合資助
通訊作者: [email protected]
引用本文: ??
尤翔程, 李世遠. 納米顆粒球形度對傾斜通道中納米流體反向混合對流傳熱的影響. 石油科學通報, 2021, 04: 604-613 YOU Xiangcheng, LI Shiyuan. Effect of nanoparticle sphericity on mixed convective flow of nanofluids in an inclined channel. Petroleum Science Bulletin, 2021, 04: 604-613. doi: 10.3969/j.issn.2096-1693.2021.04.042
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