用于船-飞行-甲板风相互作用的多方向冗余 3D-LPT 系统

IF 2.3 3区 工程技术 Q2 ENGINEERING, MECHANICAL Experiments in Fluids Pub Date : 2024-08-17 DOI:10.1007/s00348-024-03867-0
Ilda Hysa, Marthijn Tuinstra, Andrea Sciacchitano, Fulvio Scarano, Mark-Jan van der Meulen, Thomas Rockstroh, Eric W. M. Roosenboom
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引用次数: 0

摘要

在过去的几年中,以充满氦气的肥皂泡作为示踪粒子进行的体积测速测量已被引入风洞实验,并在大规模范围内进行,从而使复杂的车身空气动力学研究成为可能。在风力工程领域,一个限制因素被发现,在该领域,船舶周围的气流经常被研究。考虑到多个风向,用于照明和三维成像的光学通道会因阴影和不完整的三角测量而迅速侵蚀测量区域。这项工作正式提出了体积损失和相机冗余的概念,并研究了单片模式和分区模式的多方向照明和成像性能。围绕一个具有代表性的船舶模型进行的实验证实了这项工作。研究结果表明,将冗余相机系统划分为子系统时,可获得最大的测量体积。三维测量采用了两个照明方向和七台相机,可获得船舶周围的时间平均速度场。在从船首到飞行甲板的几个位置上,可以看到气流分离和再循环区域,以及反向旋转的涡流组。通过适当的正交分解,对飞行甲板上的非稳态进行了研究,表明该技术适用于分析大规模非稳态流动特征。
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A multi-directional redundant 3D-LPT system for ship–flight–deck wind interactions

In the past years, volumetric velocimetry measurements with helium-filled soap bubbles as tracer particles have been introduced in wind tunnel experiments and performed at large-scale, enabling the study of complex body aerodynamics. A limiting factor is identified in the field of wind engineering, where the flow around ships is frequently investigated. Considering multiple wind directions, the optical access for illumination and 3D imaging rapidly erodes the measurement regions due to shadows and incomplete triangulation. This work formalizes the concepts of volumetric losses and camera redundancy, and examines the performance of multi-directional illumination and imaging for monolithic and partitioned modes. The work is corroborated by experiments around a representative ship model. The study shows that a redundant system of cameras yields the largest measurement volume when partitioned into subsystems. The 3D measurements employing two illumination directions and seven cameras, yield the time-averaged velocity field around the ship. Regions of flow separation and recirculation are revealed, as well as sets of counter-rotating vortices in several stations from the ship bow to the flight–deck. The unsteady regime at the flight–deck is examined by proper orthogonal decomposition, indicating that the technique is suited for the analysis of large-scale unsteady flow features.

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来源期刊
Experiments in Fluids
Experiments in Fluids 工程技术-工程:机械
CiteScore
5.10
自引率
12.50%
发文量
157
审稿时长
3.8 months
期刊介绍: Experiments in Fluids examines the advancement, extension, and improvement of new techniques of flow measurement. The journal also publishes contributions that employ existing experimental techniques to gain an understanding of the underlying flow physics in the areas of turbulence, aerodynamics, hydrodynamics, convective heat transfer, combustion, turbomachinery, multi-phase flows, and chemical, biological and geological flows. In addition, readers will find papers that report on investigations combining experimental and analytical/numerical approaches.
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