首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Measurements of a turbulent boundary layer-compliant surface system in response to targeted, dynamic roughness forcing
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Measurements of a turbulent boundary layer-compliant surface system in response to targeted, dynamic roughness forcing

机译:响应于目标,动态粗糙度强制测量湍流边界层兼容表面系统的测量

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摘要

A series of experiments have been performed to study the response of a compliant (gelatin) surface to a turbulent boundary layer that has been forced by dynamic roughness. Through the synthetic flow structure generated by dynamic roughness, this work reduces the complexity of the fluid-structural problem in order to develop a fundamental framework with which to study flow control mechanisms. Flow velocity and surface deformations are measured using 2D particle image velocimetry and stereo digital image correlation, respectively. Both measurement methods are phase-locked to the roughness motion to allow the phase-averaged velocity and deformation fields to be isolated and correlated. The surface response of the non-dynamic roughness forced system is analyzed, and several spectral features are characterized. This analysis is used as context for the roughness forced deformations, subsequently confirming the response of the compliant surface to the synthetic flow mode. This demonstrates the potential of dynamic roughness experiments for studying flow control schemes and sets the stage for more detailed investigations of the effect of the compliant surface on the synthetic flow mode.
机译:已经进行了一系列实验以研究柔顺(明胶)表面对由动态粗糙度强制的湍流边界层的响应。通过由动态粗糙度产生的合成流动结构,这项工作降低了流体结构问题的复杂性,以便开发一种研究流量控制机制的基本框架。使用2D粒子图像速度测量法和立体数字图像相关性测量流速和表面变形。两个测量方法彼此锁定到粗糙度运动,以允许分离和相关的相平方速度和变形场。分析了非动态粗糙度强制系统的表面响应,并表征了几种光谱特征。该分析用作粗糙度强制变形的上下文,随后确认柔性表面响应合成流动模式。这证明了用于研究流量控制方案的动态粗糙度实验的可能性,并设定阶段,以便更详细地研究柔顺表面对合成流动模式的影响。

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