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Structured Porous Material Design for Passive Flow and Noise Control of Cylinders in Uniform Flow

机译:均匀流动中被动流动和气缸噪声控制的结构化多孔材料设计

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摘要

Cylindrical bodies in uniform flows can be coated with a porous medium as a passive flow and noise control method in an effort to reduce the acoustic effects of vortex shedding. To date, the employed open-cell porous materials typically possess a randomized internal structure. This paper presents the design and validation of a novel 3-D printed structured porous coated cylinder that has significant flexibility, in that the porosity and pores per inch of the porous coating can be modified independently and relatively easily. The performance of the structured porous coating design is compared against porous polyurethane and metal foam with the same coating dimensions and similar pores per inch and porosity via an experimental acoustic investigation, revealing strong similarity in the passive noise control performance of each material type. A numerical comparison illustrates the similarities of the wake structure of the 3-D printed porous coated cylinder to an equivalent Darcy–Forchheimer model simulation that represents a randomized internal porous structure. The performance similarities of these different porous material types indicate that a structured porous geometry can be used to understand the internal flow behavior of the porous medium responsible for reducing the cylinder vortex shedding tone that is otherwise extremely difficult or impossible with typical randomized porous structures. Moreover, significant potential exists for the porous structure to be further optimized or smartly tailored by architectural design for different control purposes, coating geometries and dimensions, and working conditions.
机译:均匀流动的圆柱体可以用多孔介质涂覆,作为被动流动和噪声控制方法,以减少涡流脱落的声学影响。迄今为止,所采用的开孔多孔材料通常具有随机的内部结构。本文介绍了一种新型的3D打印结构多孔涂层圆柱体的设计和验证,该圆柱体具有显着的柔性,因为多孔涂层的孔隙率和每英寸的孔隙可以独立且相对容易地进行修改。通过实验声学研究,将结构化多孔涂层设计的性能与具有相同涂层尺寸和相似的每英寸孔隙率和孔隙率的多孔聚氨酯和金属泡沫进行了比较,揭示了每种材料类型的被动噪声控制性能都非常相似。数值比较说明了3-D打印多孔涂层圆柱体的尾流结构与代表随机内部多孔结构的等效Darcy-Forchheimer模型模拟的相似性。这些不同的多孔材料类型的性能相似性表明,结构化的多孔几何形状可用于理解负责降低圆柱涡旋脱落音的多孔介质的内部流动行为,否则,对于典型的随机化多孔结构,这是极为困难或不可能的。此外,对于多孔结构,通过建筑设计针对不同的控制目的,涂层的几何形状和尺寸以及工作条件,可以进一步优化或巧妙地定制多孔结构。

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