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EXPERIMENTAL INVESTIGATION OF GASEOUS FLOW IN A MICRO-TUBE

机译:微管中气态流动的实验研究

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摘要

Experimental investigations on nitrogen gas flow characteristics were performed for a micro-tube. The micro-tube was fabricated in a stainless steel block by electrical discharge machining (EDM). The tube diameter was 326 μm and the ratio of length to diameter was 200. The stagnation pressure was chosen in such a way that the exit Mach number ranged from 0.1 to 1.4. The outlet pressure was fixed at atmospheric conditions. The pressure was locally measured at five locations along tube length to determine local values of Mach number and friction factor for a wide range of flow regime from laminar to turbulent flow. The result shows that f·Re is a function of Mach number and higher than incompressible value, 64 due to the compressibility effect. The values of f·Re were compared with f·Re correlation in literature. In additional experiments, Mach number at the micro-tube exit was measured by using a Shadowgraph system which visualizes the shock wave of the gas. The micro-tube with 400 μm in diameter was used for the experiment. The super sonic flow was observed since Mach number at the micro-tube exit was beyond unity. The experimental results for laminar flow were compared with the numerical results obtained by the arbitrary-Lagrangian-Eulerian method. The both results are in excellent agreement.
机译:对微管进行了氮气流动特性的实验研究。通过放电加工(EDM)将微管制成不锈钢块。管直径为326μm,长径比为200。停滞压力的选择应使出口马赫数在0.1至1.4的范围内。出口压力固定在大气压下。在沿管长的五个位置上对压力进行局部测量,以确定从层流到湍流的各种流动状态下的马赫数和摩擦系数的局部值。结果表明,f·Re是马赫数的函数,高于不可压缩值,由于可压缩性,该值大于64。将f·Re的值与文献中的f·Re的相关性进行了比较。在另外的实验中,在微管出口处的马赫数是通过使用Shadowgraph系统测量的,该系统可视化气体的冲击波。直径为400μm的微管用于实验。由于在微管出口处的马赫数超过1,因此观察到超音速流动。将层流实验结果与通过任意拉格朗日欧拉方法获得的数值结果进行了比较。两种结果都非常吻合。

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