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The Multi-Purpose Airborne Sensor Carrier MASC-3 for Wind and Turbulence Measurements in the Atmospheric Boundary Layer

机译:多功能航空传感器载体MASC-3用于大气边界层的风和湍流测量

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摘要

For atmospheric boundary-layer (ABL) studies, unmanned aircraft systems (UAS) can provide new information in addition to traditional in-situ measurements, or by ground- or satellite-based remote sensing techniques. The ability of fixed-wing UAS to transect the ABL in short time supplement ground-based measurements and the ability to extent the data horizontally and vertically allows manifold investigations. Thus, the measurements can provide many new possibilities for investigating the ABL. This study presents the new mark of the Multi-Purpose Airborne Sensor Carrier (MASC-3) for wind and turbulence measurements and describes the subsystems designed to improve the wind measurement, to gain endurance and to allow operations under an enlarged range of environmental conditions. The airframe, the capabilities of the autopilot Pixhawk 2.1, the sensor system and the data acquisition software, as well as the post-processing software, provide the basis for flight experiments and are described in detail. Two flights in a stable boundary-layer and a close comparison to a measurement tower and a Sodar system depict the accuracy of the wind speed and direction measurements, as well as the turbulence measurements. Mean values, variances, covariance, turbulent kinetic energy and the integral length scale agree well with measurements from a meteorological measurement tower. MASC-3 performs valuable measurements of stable boundary layers with high temporal resolution and supplements the measurements of meteorological towers and sodar systems.
机译:对于大气边界层(ABL)研究,无人飞机系统(UAS)除提供传统的原位测量或通过地面或基于卫星的遥感技术外,还可以提供新的信息。固定翼UAS在短时间内横切ABL的能力补充了基于地面的测量,并且能够在水平和垂直方向扩展数据的能力允许进行多方面的研究。因此,测量结果可以为研究ABL提供许多新的可能性。这项研究提出了用于风和湍流测量的多功能机载传感器载体(MASC-3)的新标记,并描述了旨在改善风测量,获得耐力并允许在更大范围的环境条件下运行的子系统。机身,自动驾驶仪Pixhawk 2.1的功能,传感器系统和数据采集软件以及后处理软件为飞行实验提供了基础,并对其进行了详细说明。在稳定边界层中的两次飞行以及与测量塔和Sodar系统的紧密比较描绘了风速和风向测量以及湍流测量的准确性。平均值,方差,协方差,湍动能和积分长度标尺与来自气象测量塔的测量结果非常吻合。 MASC-3对具有高时间分辨率的稳定边界层进行了有价值的测量,并补充了气象塔和声雷达系统的测量。

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