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Heat transfer characteristics of impinging jets: The influence of unsteadiness with different waveforms

机译:射流的传热特性:不同波形对不稳定的影响

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A series of experiments are conducted in which specially designed periodic air jets are applied to a heated surface for the purpose of enhancing heat transfer relative to the corresponding steady air jet The periodic jets are produced by a mass flow rate controller. The experiments are performed for steady jets and for specially designed periodic jets, including a combination of sinusoidal, triangular and rectangular jets at frequencies from 1.25 to 20 Hz, the triangular signal having a different symmetry (representing the ratio of time to increasing velocity in one cycle to total cycle time) and the rectangular jets having a variable duty cycle (representing the ratio of the pulse cycle on-time to off-time) at frequencies of 10 Hz and 20 Hz. Various unsteady jets show distinguishing frequency dependences and the step change, i.e. the sudden increase or decrease of signal, shows some advantageous influence on heat transfer improvement, especially negative step change. Therefore, the enhancement of combined signals lies between the performances of the individual signals. The enhancement for triangular (or sinusoidal) plus rectangular signals shows some improved performance compared with that of rectangular plus triangular (or sinusoidal) signals. The heat transfers are enhanced as Strouhal number increases from 0.004 to 0.068 on the whole for impinging jet with such combined signals. The signals of triangular jet with symmetry parameter of 0 and 1 have improved heat transfer, and the latter has a slightly better result than the former. The instantaneous changing rate of velocity also has an influence on heat transfer improvements. Thus the duty cycle of 1:2 has the best performance in terms of heat transfer enhancement in this study.
机译:进行了一系列实验,在这些实验中,将特殊设计的定期空气喷射器施加到加热的表面上,以增强相对于相应的稳定空气喷射器的热传递。定期喷射器由质量流量控制器产生。实验针对的是稳定射流和特殊设计的周期性射流,包括频率为1.25至20 Hz的正弦波,三角波和矩形射流的组合,三角波信号具有不同的对称性(表示时间与速度增加之比)周期与总周期时间之比)和矩形射流在10 Hz和20 Hz频率下具有可变占空比(代表脉冲周期导通时间与截止时间之比)。各种不稳定的射流表现出明显的频率依赖性,并且阶跃变化,即信号的突然增加或减小,对传热的改善,尤其是负阶跃变化,表现出一些有利的影响。因此,组合信号的增强介于各个信号的性能之间。与矩形加三角形(或正弦波)信号相比,三角形(或正弦)加矩形信号的增强显示出一些改进的性能。当Strouhal数从0.004总体上增加到0.068时,传热得以增强,从而以这种组合信号撞击射流。对称参数为0和1的三角射流信号具有更好的传热效果,后者的效果要比前者好一些。速度的瞬时变化率也影响传热的改善。因此,在本研究中,就传热增强而言,1:2的占空比具有最佳性能。

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