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首页> 外文期刊>Boundary-layer Meteorology >Obtaining Potential Virtual Temperature Profiles, Entrainment Fluxes, and Spectra from Mini Unmanned Aerial Vehicle Data
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Obtaining Potential Virtual Temperature Profiles, Entrainment Fluxes, and Spectra from Mini Unmanned Aerial Vehicle Data

机译:从微型无人机数据获取潜在的虚拟温度曲线,夹带通量和光谱

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摘要

We present a simple but effective small unmanned aerial vehicle design that is able to make high-resolution temperature and humidity measurements of the atmospheric boundary layer. The air model used is an adapted commercial design, and is able to carry all the instrumentation (barometer, temperature and humidity sensor, and datalogger) required for such measurements. It is fitted with an autopilot that controls the plane's ascent and descent in a spiral to 1800 m above ground. We describe the results obtained on three different days when the plane, called Aerolemma-3, flew continuously throughout the day. Surface measurements of the sensible virtual heat flux made simultaneously allowed the calculation of all standard convective turbulence scales for the boundary layer, as well as a rigorous test of existing models for the entrainment flux at the top of the boundary layer, and for its growth. A novel approach to calculate the entrainment flux from the top-down, bottom-up model of Wynagaard and Brost is used. We also calculated temperature fluctuations by means of a spectral high-pass filter, and calculated their spectra. Although the time series are small, tapering proved ineffective in this case. The spectra from the untapered series displayed a consistent -5/3 behaviour, and from them it was possible to calculate a dimensionless dissipation function, which exhibited the expected similarity behaviour against boundary-layer bulk stability. The simplicity, ease of use and economy of such small aircraft make us optimistic about their usefulness in boundary-layer research.
机译:我们提出了一种简单但有效的小型无人机设计,该设计能够对大气边界层进行高分辨率的温度和湿度测量。所使用的空气模型是经过改编的商业设计,并且能够携带此类测量所需的所有仪表(气压计,温度和湿度传感器以及数据记录器)。它装有自动驾驶仪,可在距地面1800 m处螺旋控制飞机的上升和下降。我们描述了在称为Aerolemma-3的飞机全天连续飞行的三天中获得的结果。同时进行表面虚拟热通量的表面测量,可以计算边界层的所有标准对流湍流尺度,并可以对边界层顶部的夹带通量及其增长的现有模型进行严格测试。从Wynagaard和Brost的自上而下,自下而上的模型中使用一种新颖的方法来计算夹带通量。我们还通过光谱高通滤波器计算了温度波动,并计算了它们的光谱。尽管时间序列很小,但在这种情况下,渐缩被证明是无效的。来自无锥度序列的光谱显示出一致的-5/3行为,从中可以计算出无量纲的耗散函数,该函数对边界层整体稳定性表现出预期的相似性。这种小型飞机的简单性,易用性和经济性使我们对它们在边界层研究中的实用性感到乐观。

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