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Decrease in Thermal Contact Conductance and the Contact Pressure of Finned-Tube Heat Exchangers Assembled With Different Size Bullets

机译:装有不同尺寸子弹的翅片管换热器的热接触电导和接触压力降低

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摘要

The thermal contact conductance (TCC) at the mechanically bonded tube/fin interface of a heat exchanger may be controlled by varying the amount of initial expansion of the tube. However, in this case, the TCC also varies with the temperature because of the differential expansion between the tube and the fin. The objectives of the present study are to determine the improvement in TCC resulting from higher degrees of the tube expansion, to determine the variation in TCC with the maximum temperature, and to estimate the change in contact pressure with the temperature. This paper presents the results of heat transfer experiments on mechanically expanded finned-tube specimens. Experiments were conducted in an atmosphere of nitrogen. The results showed that the TCC is enhanced by increasing the degree of initial expansion. There is a practical limit, however, to the maximum expansion that can be attempted. For the direction of heat flow prevailing in the experiments, the TCC and the contact pressure of every specimen decreased with increasing temperature.
机译:可以通过改变管的初始膨胀量来控制热交换器的机械结合的管/翅片界面处的热接触电导(TCC)。但是,在这种情况下,由于管和散热片之间的膨胀差异,TCC也随温度变化。本研究的目的是确定由于较高的管膨胀程度而导致的TCC改善,确定TCC在最高温度下的变化以及估计接触压力随温度的变化。本文介绍了在机械膨胀的翅片管样品上进行传热实验的结果。实验是在氮气气氛中进行的。结果表明,通过增加初始膨胀度可以增强TCC。但是,可以尝试的最大扩展范围实际上是有限制的。对于实验中普遍存在的热流方向,TCC和每个样品的接触压力都随温度升高而降低。

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