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Evaluation of Low-Cost Multi-Hole Probes for Atmospheric Boundary Layer Investigation

机译:低成本多孔探头用于大气边界层研究的评估

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摘要

This work presents the development of evaluating low-cost multi-hole probes (MHPs) for atmospheric boundary layer (ABL) studies. This concept is an integral part of CLOUD MAP, a National Science Foundation (NSF) funded grant led by multiple universities. CLOUD MAP stands for the Collaboration Leading Operational UAS Development for Meteorology and Atmospheric Physics and is focused on the development and implementation of unmanned aircraft systems and their integration with sensors for atmospheric measurements on Earth with the emphasis on Meteorology and Atmospheric Physics (MAP). MHPs are multi-dimensional mean-velocity measurement devices that measure pressure along a set of ports on the probe tip. MHPs are used in studies of from turbomachinery characterization, wake surveys, turbulence, ABL wind vectoring to determining the updrafts in smoke plumes. The accurate detection of sideslip angle in wind gusting is desired with MHPs. The current commercially available MHPs with sensor packages can run thousands of dollars indicating a need for highly accurate low-cost alternatives. Probes are designed using rapid prototyping methods through 3D printing and are evaluated through calibration testing. Probe tip geometry and internal tube dimensions give each probe different performance characteristics as no probe can be perfectly manufactured identically, and must all be calibrated once their lifespan in known testing flow regimes. This study addresses the development of testing platforms with a low turbulence subsonic wind tunnel as well as flight test sensor package development. Each probe is tested and validated through flight testing and comparisons with calibration curves. Standard non-nulling calibration and data reduction methods were used showing performance characteristics of each probe. Two geometries, hemispherical and pyramid, of multiple sizes are evaluated. Of the two geometry types, the hemisphere 5HPs produced the best quality pressure coefficient calibration curves with normal angular linear range between -25 to +25 degrees. Symmetry of these curves and the velocity curves indicate symmetry with the probes. A custom weather data sensor package has been developed for flight testing in ABL studies during the CLOUD MAP flight campaign. Further studies to determine print quality consistency, optimized probe designs, and furthering sensor development were examined and will improve overall accuracy and performance of these probes.
机译:这项工作介绍了评估用于大气边界层(ABL)研究的低成本多孔探针(MHP)的进展。这个概念是CLOUD MAP的组成部分,CLOUD MAP是由多所大学领导的由美国国家科学基金会(NSF)资助的项目。 CLOUD MAP代表着UAS在气象和大气物理学方面的领先合作协作发展,并且专注于无人机系统的开发和实施以及它们与用于地球大气测量的传感器的集成,重点是气象和大气物理学(MAP)。 MHP是多维平均速度测量设备,可测量沿探针尖端上一组端口的压力。 MHP用于研究从涡轮机械表征,尾流调查,湍流,ABL风向矢量到确定烟羽上升气流。使用MHP时,需要在风中精确检测侧滑角。当前带有传感器封装的市售MHP可以花费数千美元,这表明需要高精度的低成本替代产品。探针通过3D打印使用快速原型方法进行设计,并通过校准测试进行评估。探头尖端的几何形状和内管尺寸为每个探头提供了不同的性能特征,因为无法完美地制造出完全相同的探头,并且一旦在已知的测试流程中达到了使用寿命,就必须全部对其进行校准。这项研究致力于开发低湍流亚音速风洞的测试平台以及飞行测试传感器套件的开发。通过飞行测试和与校准曲线的比较来测试和验证每个探针。使用标准的非清零校准和数据减少方法,显示每种探针的性能特征。评估了多种尺寸的两个几何形状,即半球形和金字塔形。在这两种几何类型中,半球5HP产生了质量最佳的压力系数校准曲线,其法线角范围在-25至+25度之间。这些曲线和速度曲线的对称性表明与探针的对称性。在CLOUD MAP飞行活动期间,已经开发了定制的气象数据传感器套件,用于ABL研究中的飞行测试。为了确定打印质量的一致性,优化探针设计以及进一步开发传感器,我们进行了进一步的研究,这些研究将提高这些探针的整体准确性和性能。

著录项

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Aerospace engineering.;Mechanical engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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