首页> 外文期刊>Atmospheric Measurement Techniques >Raindrop fall velocities from an optical array probe and 2-D video disdrometer
【24h】

Raindrop fall velocities from an optical array probe and 2-D video disdrometer

机译:光学阵列探头和二维视频测速仪产生的雨滴下落速度

获取原文
           

摘要

We report on fall speed measurements of raindrops in light-to-heavy rain events from two climatically different regimes (Greeley, Colorado, and Huntsville, Alabama) using the high-resolution (50?μm) Meteorological Particle Spectrometer (MPS) and a?third-generation (170?μm resolution) 2-D video disdrometer (2DVD). To mitigate wind effects, especially for the small drops, both instruments were installed within a?2∕3-scale Double Fence Intercomparison Reference (DFIR) enclosure. Two cases involved light-to-moderate wind speeds/gusts while the third case was a?tornadic supercell and several squall lines that passed over the site with high wind speeds/gusts. As a?proxy for turbulent intensity, maximum wind speeds from 10?m height at the instrumented site recorded every 3?s were differenced with the 5?min average wind speeds and then squared. The fall speeds vs. size from 0.1 to 2 and ?0.7?mm were derived from the MPS and the 2DVD, respectively. Consistency of fall speeds from the two instruments in the overlap region (0.7–2?mm) gave confidence in the data quality and processing methodologies. Our results indicate that under low turbulence, the mean fall speeds agree well with fits to the terminal velocity measured in the laboratory by Gunn and Kinzer from 100?μm up to precipitation sizes. The histograms of fall speeds for 0.5, 0.7, 1 and 1.5?mm sizes were examined in detail under the same conditions. The histogram shapes for the 1 and 1.5?mm sizes were symmetric and in good agreement between the two instruments with no evidence of skewness or of sub- or super-terminal fall speeds. The histograms of the smaller 0.5 and 0.7?mm drops from MPS, while generally symmetric, showed that occasional occurrences of sub- and super-terminal fall speeds could not be ruled out. In the supercell case, the very strong gusts and inferred high turbulence intensity caused a?significant broadening of the fall speed distributions with negative skewness (for drops of 1.3, 2 and 3?mm). The mean fall speeds were also found to decrease nearly linearly with increasing turbulent intensity attaining values about 25–30?% less than the terminal velocity of Gunn–Kinzer, i.e., sub-terminal fall speeds.
机译:我们报告了使用高分辨率(50?μm)气象粒子光谱仪(MPS)和a?来测量来自两个气候不同区域(科罗拉多州的格里利和阿拉巴马州的亨茨维尔)的轻到重雨事件中雨滴的下降速度测量。第三代(170μm分辨率)2-D视频测速仪(2DVD)。为了减轻风的影响,特别是对于小水滴,这两种仪器都安装在2×3比例的双栅栏比对参考(DFIR)外壳内。有2例涉及轻至中度的风速/阵风,而第3例是前冲超音速飞机和几条风线以较高的风速/阵风通过了现场。作为湍流强度的代理,每3?s记录的仪器现场从10?m高处产生的最大风速与5?min的平均风速相差然后平方。从MPS和2DVD分别得出跌落速度与尺寸的关系(从0.1到2,大于0.7mm)。两种仪器在重叠区域(0.7–2?mm)的下降速度的一致性使人们对数据质量和处理方法充满信心。我们的结果表明,在低湍流条件下,平均下降速度与Gunn和Kinzer在实验室测量的从100?μm直至降水量的最终速度的拟合度非常吻合。在相同条件下,详细检查了0.5、0.7、1和1.5?mm尺寸的下降速度直方图。 1和1.5?mm大小的直方图形状是对称的,并且在两种仪器之间具有良好的一致性,没有迹象表明存在偏斜或下端或上端落下速度。从MPS坠落的0.5和0.7?mm较小的直方图,虽然通常是对称的,但表明不能排除偶然发生的次终端和超级终端坠落速度。在超级单体情况下,强烈的阵风和推断的高湍流强度导致下降速度分布显着加宽,且具有负偏斜度(对于1.3、2和3?mm的下降)。还发现,平均下降速度随着湍流强度的增加而线性下降,达到的值比Gunn-Kinzer的终极速度(即次终极下降速度)低25–30%。

著录项

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