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The Effect of Porosity on the Porous Coated Cylinder Diameter

机译:孔隙率对多孔涂层圆筒直径的影响

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摘要

Cylinders placed in uniform flow produce a vortex shedding tone that can be observed in many commercial and industrial applications, such as chimney stacks, high-speed train pantographs, power lines and aircraft landing gear. Porous coating treatments have been effective at weakening this vortex shedding tone. The true outer diameter of a porous coated cylinder is uncertain, as the outer surface area decreases with increasing porosity, thus making the Strouhal number estimation of the cylinder difficult. An experimental investigation is presented in this paper. The investigated cylinders are three polyurethane coated cylinders with outer diameters of 60 mm and varying porosity coating thicknesses of 10 mm, and two bare cylinders with outer diameters of 40 mm and 60 mm. Far-field acoustic measurements conducted in an anechoic wind tunnel were obtained at four flow speeds, between 20 m/s and 40 m/s. From these data, a relationship between an effective porous coated cylinder diameter and porosity is presented.
机译:放置在均匀流缸产生,可以在许多商业和工业应用,例如烟囱,高速列车受电弓,电源线和飞行器起落架被观察的涡旋脱落音调。多孔涂层的治疗一直在削弱这种旋涡脱落音效果。多孔涂覆气缸的真实外径是不确定的,作为外表面面积的增加的孔隙率,从而使气缸的斯德鲁哈尔数估计难以减小。的实验研究,提出在本文中。所研究的缸与为60mm外径3个聚氨酯涂布的气缸和10mm变化的孔隙率的涂层厚度,并以40毫米和60毫米外直径的两个裸气缸。在四个流动速度得到在消声风洞进行远场声学测量,为20m / s和40米之间/秒。从这些数据中,一个有效的多孔涂覆的圆柱直径和孔隙率之间的关系被呈现。

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