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Mixed convection nanofluid flow over microscale forward-facing step - Effect of inclination and step heights

机译:微米级向前台阶上的混合对流纳米流体流-倾斜度和台阶高度的影响

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摘要

A numerical study of nanofluid flow and heat transfer of laminar mixed convection flow over a three-dimensional, horizontal microscale forward-facing step (MFFS) is reported. The effects of different step heights and the duct inclination angle on the heat transfer and fluid flow are discussed in this study. The straight and downstream walls were heated to a constant temperature and uniform heat flux respectively. The numerical results were carried out for step heights of 350 μm, 450 μm, 550 μm and 650 μm. Different inclination angles were considered to determine their effects on the flow and heat transfer. Ethylene glycol-Si02 nanofluid is considered with a 25 nm particle diameter and 4% volume fraction. The results reveal that the Nusselt increases as the step heights increase. Additionally, no significant effect of the duct inclination angle is found on the heat transfer rate and the fluid flow.
机译:报道了在三维水平微尺度正向步骤(MFFS)上层流混合对流的纳米流体流动和传热的数值研究。本研究讨论了不同台阶高度和管道倾斜角度对传热和流体流动的影响。将直壁和下游壁分别加热至恒定温度和均匀的热通量。对于350μm,450μm,550μm和650μm的台阶高度进行了数值结果。考虑不同的倾角来确定它们对流动和传热的影响。乙二醇-SiO 2纳米流体被认为具有25nm的粒径和4%的体积分数。结果表明,努塞尔特随着台阶高度的增加而增加。另外,没有发现导管倾斜角对传热速率和流体流量有显着影响。

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