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钝体非定常气动力的风洞测量系统:综述与新视角

Wind Tunnel Measurement Systems for Unsteady Aerodynamic Forces on Bluff Bodies: Review and New Perspective.

作者信息

Chen Zengshun, Xu Yemeng, Huang Hailin, Tse Kam Tim

机构信息

School of Civil Engineering, Chongqing University, Chongqing 400045, China.

Department of Civil and Environmental Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

出版信息

Sensors (Basel). 2020 Aug 17;20(16):4633. doi: 10.3390/s20164633.

Abstract

Wind tunnel tests have become one of the most effective ways to evaluate aerodynamics and aeroelasticity in bluff bodies. This paper has firstly overviewed the development of conventional wind tunnel test techniques, including high frequency base balance technique, static synchronous multi-pressure sensing system test technique and aeroelastic test, and summarized their advantages and shortcomings. Subsequently, two advanced test approaches, a forced vibration test technique and hybrid aeroelastic- force balance wind tunnel test technique have been comprehensively reviewed. Then the characteristics and calculation procedure of the conventional and advanced wind tunnel test techniques were discussed and summarized. The results indicated that the conventional wind tunnel test techniques ignored the effect of structural oscillation on the measured aerodynamics as the test model is rigid. A forced vibration test can include that effect. Unfortunately, a test model in a forced vibration test cannot respond like a structure in the real world; it only includes the effect of structural oscillation on the surrounding flow and cannot consider the feedback from the surrounding flow to the oscillation test model. A hybrid aeroelastic-pressure/force balance test technique that can observe unsteady aerodynamics of a test model during its aeroelastic oscillation completely takes the effect of structural oscillation into consideration and is, therefore, effective in evaluation of aerodynamics and aeroelasticity in bluff bodies. This paper has not only advanced our understanding for aerodynamics and aeroelasticity in bluff bodies, but also provided a new perspective for advanced wind tunnel test techniques that can be used for fundamental studies and engineering applications.

摘要

风洞试验已成为评估钝体空气动力学和气动弹性的最有效方法之一。本文首先概述了传统风洞试验技术的发展,包括高频底座天平技术、静态同步多压力传感系统试验技术和气弹试验,并总结了它们的优缺点。随后,对两种先进的试验方法,即强迫振动试验技术和混合气动弹性-力平衡风洞试验技术进行了全面综述。然后讨论并总结了传统和先进风洞试验技术的特点及计算过程。结果表明,传统风洞试验技术由于试验模型是刚性的,忽略了结构振动对测量空气动力学的影响。强迫振动试验可以包含这种影响。不幸的是,强迫振动试验中的试验模型不能像实际中的结构那样响应;它只包含结构振动对周围流动的影响,而不能考虑周围流动对振动试验模型的反馈。一种能够在试验模型气动弹性振动过程中观测其非定常空气动力学的混合气动弹性-压力/力平衡试验技术,完全考虑了结构振动的影响,因此在评估钝体的空气动力学和气动弹性方面是有效的。本文不仅增进了我们对钝体空气动力学和气动弹性的理解,还为可用于基础研究和工程应用的先进风洞试验技术提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccaa/7472095/cdd14908d7be/sensors-20-04633-g001.jpg

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