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用于气溶胶粒子浓度测量的四旋翼无人机系统的特性描述。

Characterization of a Quadrotor Unmanned Aircraft System for Aerosol-Particle-Concentration Measurements.

机构信息

Department of Chemistry, University of Wisconsin , Madison, 53706 Wisconsin, United States.

Scripps Institution of Oceanography , La Jolla, 92037 California, United States.

出版信息

Environ Sci Technol. 2016 Feb 2;50(3):1376-83. doi: 10.1021/acs.est.5b05320. Epub 2016 Jan 15.

Abstract

High-spatial-resolution, near-surface vertical profiling of atmospheric chemical composition is currently limited by the availability of experimental platforms that can sample in constrained environments. As a result, measurements of near-surface gradients in trace gas and aerosol particle concentrations have been limited to studies conducted from fixed location towers or tethered balloons. Here, we explore the utility of a quadrotor unmanned aircraft system (UAS) as a sampling platform to measure vertical and horizontal concentration gradients of trace gases and aerosol particles at high spatial resolution (1 m) within the mixed layer (0-100 m). A 3D Robotics Iris+ autonomous quadrotor UAS was outfitted with a sensor package consisting of a two-channel aerosol optical particle counter and a CO2 sensor. The UAS demonstrated high precision in both vertical (±0.5 m) and horizontal positions (±1 m), highlighting the potential utility of quadrotor UAS drones for aerosol- and trace-gas measurements within complex terrain, such as the urban environment, forest canopies, and above difficult-to-access areas such as breaking surf. Vertical profiles of aerosol particle number concentrations, acquired from flights conducted along the California coastline, were used to constrain sea-spray aerosol-emission rates from coastal wave breaking.

摘要

目前,高空间分辨率、近地表大气化学成分垂直廓线的测量受到可在受限环境中采样的实验平台的限制。因此,痕量气体和气溶胶粒子浓度近地表梯度的测量仅限于从固定位置塔或系留气球进行的研究。在这里,我们探讨了四旋翼无人机系统(UAS)作为采样平台的实用性,以在混合层(0-100 米)内以高空间分辨率(1 米)测量痕量气体和气溶胶粒子的垂直和水平浓度梯度。一架 3D Robotics Iris+ 自动四旋翼 UAS 配备了一个由双通道气溶胶光学粒子计数器和 CO2 传感器组成的传感器套件。UAS 在垂直(±0.5 米)和水平位置(±1 米)上都表现出高精度,突出了四旋翼 UAS 无人机在复杂地形(如城市环境、森林冠层以及难以进入的区域,如破浪区)内进行气溶胶和痕量气体测量的潜力。从沿加利福尼亚海岸线进行的飞行中获取的气溶胶粒子数浓度垂直廓线用于约束从沿海波浪破碎中释放的海雾气溶胶排放率。

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