首页> 外文会议>Remote Sensing of Clouds and the Atmosphere XIX; and Optics in Atmospheric Propagation and Adaptive Systems XVII >Investigation of optical turbulence in the atmospheric surface layer using scintillometer measurements along a slant path and comparison to ultrasonic anemometer measurements
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Investigation of optical turbulence in the atmospheric surface layer using scintillometer measurements along a slant path and comparison to ultrasonic anemometer measurements

机译:使用闪烁仪沿倾斜路径进行测量并与超声风速仪测量进行比较,研究大气表层的光学湍流

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Optical turbulence represented by the structure function parameter of the refractive index C_n~2 is a relevant parameter for the performance of electro-optical systems and characterization of the atmospheric influence on imaging. It was investigated during a field trial above an Highveld grassland in the atmospheric surface layer at the Rietvlei Nature Reserve close to Pretoria in South Africa from 18th June to 30th June 2013. This campaign was performed to compare different measurement techniques analyzing the diurnal formation of the vertical distribution of optical turbulence up to a height of 16 m above ground. The chosen time period was characterized by a pronounced diurnal cycle of the meteorological conditions, i.e. low variations from day to day. Ultra sonic anemometers were used to measure high frequency time series (50 Hz) of temperature at single points. From the statistical analysis of these time series C_n~2 was derived. Three instruments were mounted at a portable mast in the center of slant path measurements over a horizontal distance of 1000 m using large aperture scintillometers (Boundary layer scintillometer BLS 900). Averaging over a time period of 5 minutes, the results of both methods are compared. The agreement in the results of optical turbulence is quite good. Discrepancies and agreement are analyzed with respect to the atmospheric stability and other meteorological parameters. Lowest values of C_n~2 at 4.6 m above ground amount to about 8~*10~(-17) m~(-2/3), daily maxima to 6~*10~(-13) m~(-2/3). Additional to the nearly constant meteorological conditions in the diurnal cycle, the uniformity of the terrain let the results of this measurement campaign an ideal data set for investigating methodological questions regarding a comparison of single point measurements with integrated measurements over a horizontal distance. Four stability regimes were identified in the diurnal cycle and investigated. These are convective conditions during the day, neutral conditions about sunrise and sunset, and two different stable regimes at night.
机译:由折射率C_n〜2的结构函数参数表示的光学湍流是有关电光系统性能和表征大气对成像影响的相关参数。 2013年6月18日至6月30日,在南非比勒陀利亚附近的Rietvlei自然保护区大气表层的Highveld草原上进行了田间试验,对它进行了调查。该活动的目的是比较不同的测量技术,以分析其昼夜变化。光学湍流的垂直分布,最高达16 m的高度。所选时间段的特点是气象条件明显的昼夜周期,即每天变化很小。超声波风速仪用于测量单点温度的高频时间序列(50 Hz)。从这些时间序列的统计分析得出C_n〜2。使用大口径闪烁仪(边界层闪烁仪BLS 900)在水平距离1000 m上将三台仪器安装在倾斜路径测量中心的便携式桅杆上。平均5分钟,比较两种方法的结果。光学湍流结果的一致性很好。分析了关于大气稳定性和其他气象参数的差异和一致性。地上4.6 m处C_n〜2的最小值约为8〜* 10〜(-17)m〜(-2/3),日最大值为6〜* 10〜(-13)m〜(-2 / 3)。除了昼夜周期中几乎恒定的气象条件外,地形的均匀性使该测量活动的结果成为理想的数据集,用于调查有关将单点测量与水平距离上的集成测量进行比较的方法论问题。在昼夜周期中确定并研究了四种稳定状态。这些是白天的对流条件,日出和日落的中性条件以及晚上的两种不同的稳定状态。

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