首页> 外文会议>ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Thermal Engineering Summer Heat Transfer Conference 2007 >THE EFFECT OF THE TOP WALL TEMPERATURE ON THE LAMINAR NATURAL CONVECTION IN RECTANGULAR CAVITIES WITH DIFFERENT ASPECT RATIOS
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THE EFFECT OF THE TOP WALL TEMPERATURE ON THE LAMINAR NATURAL CONVECTION IN RECTANGULAR CAVITIES WITH DIFFERENT ASPECT RATIOS

机译:顶壁温度对具有不同纵横比的矩形腔中层流自然对流的影响

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The effect of the top wall temperature on the laminar natural convection in air-filled rectangular cavities driven by a temperature difference across the vertical walls was investigated for three different aspect ratios of 0.5, 1.0 and 2.0. The temperature distributions along the heated vertical wall were measured and the flow patterns in the cavities were visualized. The experiments were performed for a global Grashof number of approximately l.8×l0~8 and non-dimensional top wall temperatures from 0.52 (insulated) to 1.42. As the top wall was heated, the flow separated from the top wall with an undulated flow region in the corner of the cavity, which resulted in a non-uniformity in the temperature profiles in this region. The location and extent of the undulation in the flow is primarily determined by the top wall temperature, and nearly independent of the aspect ratio of the cavity. The local Nusselt number was correlated to the local Rayleigh number for all three cavities in the form of Nu = C · Ra~n, but the values of the constants C and n changed with the aspect ratio.
机译:对于0.5、1.0和2.0的三种不同的长宽比,研究了顶壁温度对充气矩形腔中层流自然对流的影响,该矩形对流由垂直壁上的温度差驱动。测量沿加热的垂直壁的温度分布,并观察型腔中的流动模式。实验的整体Grashof数约为1.8×10〜8,无量纲顶壁温度为0.52(绝热)至1.42。当顶壁被加热时,流动与顶壁分离,在空腔的拐角处具有起伏的流动区域,这导致该区域中的温度分布不均匀。流动中起伏的位置和程度主要取决于顶壁温度,并且几乎与空腔的纵横比无关。所有三个腔体的局部Nusselt数都与局部Rayleigh数相关,形式为Nu = C·Ra〜n,但是常数C和n的值随纵横比而变化。

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