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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >The reciprocating motion characteristics of nanofluid inside the piston cooling gallery
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The reciprocating motion characteristics of nanofluid inside the piston cooling gallery

机译:纳米流体在活塞冷却通道内的往复运动特性

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With the peak cylinder pressure in diesel engines steadily increasing, simply extending or modifying the cooling gallery configuration may be insufficient when power rating is above a certain level. The nanofluid with better heat transfer capacity may become a more appropriate option to improve piston cooling performance. Therefore, the current paper employed a high-speed camera to capture the flow patterns of nanofluid and air inside a simplified piston gallery at various crank angles and explored the heat transfer mechanism of solid-gas-liquid three-phase flow (nanoparticles, base fluid and air) during the reciprocating motion. On this basis, three numerical simulation methods (VOF, CISVOF and Eulerian-Eulerian) were further carried out. The effects of engine speed, nanofluid filling ratio and nanoparticle concentration were discussed. The results revealed that the nanofluid is more appropriate for the piston thermal management and the cooling effect increases with the engine speed and nanoparticle volume fraction. (C) 2015 Elsevier B.V. All rights reserved.
机译:随着柴油发动机中的峰值气缸压力稳定增加,当额定功率高于一定水平时,简单地扩展或修改冷却通道配置可能不足。具有更好的传热能力的纳米流体可能成为改善活塞冷却性能的更合适的选择。因此,目前的论文采用高速相机捕获了各种曲柄角下简化的活塞通道内的纳米流体和空气的流动模式,并探索了固-气-液三相流(纳米颗粒,基础流体)的传热机理。和空气)。在此基础上,进一步进行了三种数值模拟方法(VOF,CISVOF和Eulerian-Eulerian)。讨论了发动机转速,纳米流体填充率和纳米颗粒浓度的影响。结果表明,纳米流体更适合于活塞的热管理,并且冷却效果随着发动机转速和纳米颗粒体积分数的增加而增加。 (C)2015 Elsevier B.V.保留所有权利。

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