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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental study of the pressure drop after fractal-shaped orifices in turbulent pipe flows
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Experimental study of the pressure drop after fractal-shaped orifices in turbulent pipe flows

机译:分形孔后紊流管内压降的实验研究

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Fractal-shaped orifices are thought to have a significant effect on the flow mixing properties downstream a pipe owing to their edge self-similarity shape. Here, we investigate the pressure drop after such fractal orifices and measure the pressure recovery at different stations downstream the orifice. A direct comparison is made with the pressure drop measured after regular circular orifices with the same flow area. Our results show that the fractal-shaped orifices have a significant effect on the pressure drop. Furthermore, the pressure drop measured across the fractal-shaped orifices is found to be lower than that from regular circular orifices of the same flow areas. This result could be important in designing piping systems from the point of view of losses. It looks promising to use the fractal-shaped orifices as flowmeters as they can sense the pressure drop across them accurately with lower losses than the regular circular-shaped ones.
机译:分形孔由于其边缘自相似形状而被认为对管道下游的流动混合特性具有重要影响。在这里,我们研究了这种分形孔口后的压降,并测量了孔口下游不同位置的压力回收率。直接比较具有相同流通面积的规则圆形孔口后测得的压降。我们的结果表明,分形孔对压降有显着影响。此外,发现在分形孔口上测得的压降低于在相同流动区域的规则圆形孔口上测得的压降。从损失的角度来看,这一结果对于设计管道系统可能很重要。使用分形节流孔作为流量计看起来很有希望,因为它们可以准确地感测跨过节流孔的压降,而损失却比普通的圆形孔要低。

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