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首页> 外文期刊>International Journal of Heat and Mass Transfer >Turbulent natural convection in a vertical parallel-plate channel with asymmetric heating
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Turbulent natural convection in a vertical parallel-plate channel with asymmetric heating

机译:垂直平行板通道中具有不对称加热的湍流自然对流

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摘要

Turbulent natural convection in a vertical parallel plate channel has been investigated both experimentally and numerically. The experimental channel is formed of a uniform temperature heater wall and an opposing glass wall. A fibre flow laser doppler anemometer (LDA) is used to measure velocity profiles along the channel. Simultaneous velocity and temperature profile measurements are made at the channel outlet. A commercial computational fluid dynamics (CFD) code is used to simulate heat transfer and fluid flow in the channel numerically. The code is customised building in some low Reynolds number (LRN) k-ε turbulence models. The numerical method used in this study is found to predict heat transfer and flow rate fairly accurately. It is also capable of capturing velocity and temperature profiles with some accuracy. Experimental and numerical data are presented comparatively in the form of velocity, temperature, and turbulent kinetic energy profiles along the channel for a case. Correlating equations are obtained from the numerical results for heat transfer and induced flow rate and, are presented graphically comparing with other studies available in the literature.
机译:已经在实验和数值上研究了垂直平行板通道中的湍流自然对流。实验通道由温度均匀的加热器壁和相对的玻璃壁组成。光纤流多普勒风速仪(LDA)用于测量沿通道的速度分布。在通道出口同时进行速度和温度曲线测量。商业计算流体动力学(CFD)代码用于数值模拟通道中的传热和流体流动。该代码是在某些低雷诺数(LRN)k-ε湍流模型中定制的。发现本研究中使用的数值方法可以相当准确地预测传热和流速。它还能够以一定的精度捕获速度和温度曲线。实验和数值数据以沿通道的速度,温度和湍动能曲线的形式进行比较表示。从传热和诱导流量的数值结果中获得了相关方程,并以图形方式与文献中的其他研究进行了比较。

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