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Turbulent Mixed Convection Flow Over a Forward-facing Step: The Effect of Step Heights

机译:前向台阶上的湍流混合对流:阶梯高度的影响

摘要

Measurements of heat transfer and fluid flow of turbulent mixed convection boundary-layer air flow over an isothermal two-dimensional, vertical forward-facing step are reported. The upstream and downstream walls and the step itself were heated to a uniform and constant temperature. Air velocity and temperature distributions and their turbulent fluctuations are measured simultaneously by using, respectively, a two-component laser-Doppler velocimeter (LDV) and a cold wire anemometer. The present study examines the effect of forward-facing step heights on turbulent mixed convection flow along a vertical flat plate. The experiment was carried out for step heights of 0, 11, and 22 mm, at a free stream air velocity, u∞, of 0.55 m⋅s−1, and a temperature difference, ΔT, of 30 °C between the heated walls and the free stream air (corresponding to a local Grashof number Grxi=6.45×1010). It was found that the turbulence intensity of the streamwise and transverse velocity fluctuations and the intensity of temperature fluctuations downstream of the step increase as the step height increases. Also, it was found that both the reattachment length and the heat transfer rate from the downstream heated wall increase with increasing step height.
机译:报告了在等温二维,垂直朝前步骤中湍流混合对流边界层气流的传热和流体流量的测量结果。将上游和下游壁以及台阶本身加热至均匀且恒定的温度。分别使用两分量激光多普勒测速仪(LDV)和冷线风速仪同时测量风速和温度分布及其湍流波动。本研究研究了向前的台阶高度对沿垂直平板的湍流混合对流的影响。实验是在0、11和22 mm的台阶高度,自由流空气速度u∞为0.55m⋅s-1且加热壁之间的温度差ΔT为30 C的情况下进行的自由气流(对应于当地的Grashof数Grxi = 6.45×1010)。已经发现,随着台阶高度的增加,沿台阶方向的横向和横向速度波动的湍流强度和温度波动的强度都增加了。另外,还发现,随着台阶高度的增加,重新附接长度和来自下游加热壁的传热速率均增加。

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  • 作者

    Abu-Mulaweh Hosni;

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  • 年度 2005
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