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Development of hybrid particle tracking algorithms and their applications in airflow measurement within an aircraft cabin mock-up.

机译:混合粒子跟踪算法的开发及其在飞机机舱模型内气流测量中的应用。

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摘要

Obtaining reliable experimental airflow data within an indoor environment is a challenging task and critical in studying and solving indoor air quality problems. The Hybrid Particle Tracking Velocimetry (HPTV) system is aimed at fulfilling this need. It was developed based on existing Particle Tracking Velocimety (PTV) and Volumetric Particle Tracking Velocimetry (VPTV) techniques. The HPTV system requires three charge-coupled device (CCD) cameras to view the illuminated flow field and capture the trajectories of the seeded particles. By adopting the hybrid spatial matching and object tracking algorithms, this system can acquire the 3-Dimensional velocity components within a large volume with relatively high spatial and temporal resolution.;Synthetic images were employed to validate the performance of three components of the system: image processing, camera calibration and 3D velocity reconstruction. These three components are also the main error sources. The accuracy of the whole algorithm was analyzed and discussed through a back projection approach. The results showed that the algorithms performed effectively and accurately. The reconstructed 3D trajectories and streaks agreed well with the simulated streamline of the particles.;As an overall testing and application of the system, HPTV was applied to measure the airflow pattern within a full-scale, five-row section of a Boeing 767-300 aircraft cabin mockup. A complete experimental procedure was developed and strictly followed throughout the experiment. Both global flow field at the whole cabin scale and the local flow field at the breathing zone of one passenger were studied. Each test case was also simulated numerically using a commercial computational fluid dynamic (CFD) package. Through comparison between the results from the numerical simulation and the experimental measurement, the potential model validation capability of the system was demonstrated. Possible reasons explaining the difference between experimental measurement and model prediction were discussed.
机译:在室内环境中获取可靠的实验气流数据是一项艰巨的任务,对于研究和解决室内空气质量问题至关重要。混合粒子跟踪测速(HPTV)系统旨在满足这一需求。它是基于现有的粒子跟踪测速(PTV)和体积粒子跟踪测速(VPTV)技术开发的。 HPTV系统需要三个电荷耦合设备(CCD)摄像机来查看照射的流场并捕获种子粒子的轨迹。通过采用混合空间匹配和目标跟踪算法,该系统可以在较大体积内以相对较高的时空分辨率获取三维速度分量。合成图像用于验证系统三个分量的性能:图像处理,相机校准和3D速度重建。这三个组件也是主要的错误源。通过反投影方法分析和讨论了整个算法的准确性。结果表明,该算法有效,准确。重建的3D轨迹和条纹与颗粒的模拟流线非常吻合。作为系统的整体测试和应用,HPTV被用于测量波音767-A全尺寸五行截面内的气流模式。 300飞机机舱模型。制定了完整的实验程序,并在整个实验过程中严格遵循。研究了整个机舱规模的整体流场和一名乘客呼吸区域的局部流场。还使用商业计算流体动力学(CFD)软件包对每个测试用例进行了数值模拟。通过比较数值模拟结果和实验测量结果,证明了该系统的潜在模型验证能力。讨论了解释实验测量和模型预测之间差异的可能原因。

著录项

  • 作者

    Yan, Wei.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Aerospace.;Atmospheric Sciences.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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