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Experimental Investigation of the Air Flow Behavior and Heat Transfer Characteristics in Microchannels with Different Channel Lengths

机译:具有不同通道长度的微通道空气流动性能和传热特性的实验研究

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This paper attempts to experimentally investigate the influence of channel lengths to the flow behavior and heat transfer characteristics in circular microchannels. The diameter of circular microchannels are 0.4mm and the lengths of them are 10mm and 20mm, respectively. All tests were performed with air. The experiments were completed with Reynolds number in the range of 300~2700. Results of experiments show that the length of microchannels has remarkable effects on the performance of flow behavior and heat transfer characteristics. For the flow behavior, both the friction factor and Poiseuille number drop as the channel length increases, and all the experimental value are higher than the theoretical one. Moreover, the channel length doesn't influent the value of critical Reynolds number. For the heat transfer characteristics, Nusselt number decreases with the increase of the channel length. The channel length also has a huge influence on the thermal performance. A better thermal performance is obtained in a shorter channel. The results also indicated that in both cases, the friction factor decreases with the increase of the Reynolds number. At the same time, the Poiseuille number increases when the Reynolds number keeps rising. This phenomenon is different from traditional theory that Poiseuille number is widely considered as a constant in laminar regime. It is also observed that the value of critical Reynolds number is between 1500 and 1700 in this paper, this value is lower than the value of theoretical critical Reynolds number of 2300. Nusselt number increases as the increase of the Reynolds numbers, however, the traditional theory considered that it is a constant in laminar regime.
机译:本文试图通过实验研究通道长度对圆形微通道中的流动行为和传热特性的影响。圆形微通道的直径为0.4mm,它们的长度分别为10mm和20mm。所有测试均用空气进行。在300〜2700的范围内完成实验。实验结果表明,微通道长度对流动​​性能和传热特性的性能具有显着影响。对于流动行为,随着沟道长度的增加,摩擦因子和Poiseuille数量下降,并且所有实验值都高于理论上。此外,信道长度不会影响关键雷诺数的值。对于传热特性,纽带数随通道长度的增加而降低。通道长度对热性能产生了巨大影响。在较短的频道中获得更好的热性能。结果还表明,在这两种情况下,摩擦因子随着雷诺数的增加而降低。与此同时,雷诺数的释放数量不断上升。这种现象与传统理论不同,即Poiseuille号被广泛认为是层流制度的常数。还观察到,关键雷诺数的值在本文中,该值低于理论关键雷诺数的2300的值。然而,随着雷诺数的增加,尤塞格数增加了传统的理论认为它是层层制度的常数。

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