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Impact of external temperature distribution on the convective mass flow rate in a vertical channel - A theoretical and experimental study

机译:外部温度分布对垂直通道对流质量流量的影响-理论与实验研究。

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摘要

Many works have been performed on heated vertical rectangular open-ended channels. Whilst in most cases, thermal fields are quite well predicted or reproducible, there were often large unexplained variations in the experimental flow rate for apparently the same conditions. An experimental and theoretical investigation has therefore been carried out to identify the effect of external thermal stratifications on the flow rate. Four values of steady and uniform heat flux, equivalent to Rayleigh numbers between2.9×104and1.6×108were imposed experimentally either on one or both sides of a vertical rectangular channel, with various ambient thermal gradients external to the channel. It was observed that the mass flow rate was significantly reduced as the positive upward, external thermal gradient increased. A theoretical model of the phenomenon was also developed. There is an excellent agreement between the theoretically predicted and experimentally measured mass flow rates. This clearly highlights that external temperature distributions are key driving factors and their influence is accurately quantified in this work.
机译:在加热的垂直矩形开放式通道上已进行了许多工作。尽管在大多数情况下,热场可以很好地预测或重现,但在显然相同的条件下,实验流量通常会有无法解释的大变化。因此,进行了实验和理论研究,以确定外部热分层对流速的影响。实验性地在垂直矩形通道的一侧或两侧施加了四个恒定且均匀的热通量值,分别等于2.9×104和1.6×108之间的瑞利数,并且在通道外部具有各种环境热梯度。观察到,随着正向上,外部热梯度的增加,质量流率显着降低。还开发了该现象的理论模型。在理论上预测的和实验上测量的质量流率之间有着极好的一致性。这清楚地表明,外部温度分布是关键驱动因素,并且在这项工作中可以准确地量化它们的影响。

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