【24h】

Visible Wind?: Wind Profile Measurements at Low Altitude

机译:可见风?:低海拔地区的风廓线测量

获取原文
获取原文并翻译 | 示例

摘要

Visible Wind? is developing an inexpensive rapid response system, for accurately characterizing wind shear and small scale wind phenomena in the boundary layer and for prospecting suitable locations for wind power turbines. The ValidWind system can also collect reliable "ground truth" for other remote wind sensors. The system employs small (0.25 m dia.) lightweight balloons and a tracker consisting of an Impulse 200 XL laser rangefinder coupled to a PC for automated data recording. Experiments on balloon trajectories demonstrate that the laser detection of range (± 0.5 m), together with measured azimuth and altitude, is an inexpensive, convenient, and capable alternative to other wind tracking methods. The maximum detection range has been increased to 2200 meters using micro-corner-cube retroreflector tape on balloons. Low power LEDs enable nighttime tracking. To avoid large balloon gyrations about the mean trajectory, we use balloons having low ascent rates and subcritical Reynolds numbers. Trajectory points are typically recorded every 4-7 seconds. Atmospheric features observed under conditions of inversions or "light and variable winds" include abrupt onsets of shear at altitudes of 100 -250 m, velocity changes of order 1-3 m/s within layers of 10-20 m thickness, and veering of the wind direction by 180 degrees or more as altitude increases from 300 to 500 m. We have previously reported comparisons of balloon-based wind profiles with the output of a co-located sodar. Even with the Impulse rangefinder, our system still requires a "man in the loop" to track the balloon. A future system enhancement will automate balloon tracking, so that laser returns are obtained automatically at 1 Hz. While balloon measurements of large-scale, high altitude wind profiles are well known, this novel measurement system provides high-resolution, real-time characterization of the fluctuating local wind fields at the bottom of the boundary layer where wind power turbines and other remote wind sensors must operate.
机译:可见风?公司正在开发一种廉价的快速响应系统,用于准确表征边界层中的风切变和小规模风现象,并为风力涡轮机寻找合适的位置。 ValidWind系统还可以为其他远程风传感器收集可靠的“地面事实”。该系统采用了小直径(0.25 m)轻便的气球和由Impulse 200 XL激光测距仪和PC组成的跟踪器,用于自动数据记录。气球轨迹上的实验表明,对距离(±0.5 m)进行激光检测以及测得的方位角和高度,是一种廉价,方便且能够替代其他风跟踪方法的方法。使用气球上的微角立方体后向反射带,最大检测范围已增加到2200米。低功率LED启用夜间跟踪。为了避免有关平均轨迹的大气球旋转,我们使用上升率和亚临界雷诺数低的气球。轨迹点通常每4-7秒记录一次。在颠倒或“微风和变风”条件下观察到的大气特征包括在100 -250 m的高度突然发生剪切,在10-20 m的厚度层内速度变化为1-3 m / s,以及海拔从300升至500 m时,风向将增加180度或更多。我们以前曾报道过将基于气球的风廓线与同位置声雷达的输出进行比较。即使使用Impulse测距仪,我们的系统仍需要“环内人员”来跟踪气球。将来的系统增强功能将使气球跟踪自动进行,以便以1 Hz的频率自动获得激光返回。尽管众所周知的是大规模,高空风廓线的气球测量,但是这种新颖的测量系统可以对边界层底部的波动的局部风场进行高分辨率,实时的表征,在边界层的底部有风力涡轮机和其他遥远的风传感器必须运行。

著录项

  • 来源
  • 会议地点 Berlin(DE)
  • 作者单位

    Space Dynamics Laboratory, Utah State University, 1695 North Research Park Way, North Logan, UT 84341 Energy Dynamics Laboratory, Utah State University, 1695 North Research Park Way, North Logan, UT 84341;

    rnSpace Dynamics Laboratory, Utah State University, 1695 North Research Park Way, North Logan, UT 84341 Energy Dynamics Laboratory, Utah State University, 1695 North Research Park Way, North Logan, UT 84341;

    rnUtah State University, Center for Active Sensing and Imaging, 620 Grand Ave., North Logan, UT 84341;

    rnSpace Dynamics Laboratory, Utah State University, 1695 North Research Park Way, North Logan, UT 84341 Energy Dynamics Laboratory, Utah State University, 1695 North Research Park Way, North Logan, UT 84341;

    rnSpace Dynamics Laboratory, Utah State University, 1695 North Research Park Wa;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 雷达 ; 大气遥感 ;
  • 关键词

    wind speed; wind direction; wind shear; profiling; rangefinder; balloon; tracking;

    机译:风速;风向;风切变剖析测距仪;气球;追踪;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号