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利用数字全息术从无人机对大气气溶胶颗粒进行成像。

Imaging atmospheric aerosol particles from a UAV with digital holography.

作者信息

Kemppinen Osku, Laning Jesse C, Mersmann Ryan D, Videen Gorden, Berg Matthew J

机构信息

Earth System Science Interdisciplinary Center, University of Maryland, College Park, MD, 20742, USA.

Department of Physics, University of Central Florida, Orlando, FL, 32816-2385, USA.

出版信息

Sci Rep. 2020 Sep 30;10(1):16085. doi: 10.1038/s41598-020-72411-x.

Abstract

The lack of quantitative characterization of aerosol particles and their loading in the atmosphere is one of the greatest uncertainties in climate-change science. Improved instrumentation capable of determining the size and shape of aerosol particles is needed in efforts to reduce this uncertainty. We describe a new instrument carried by an unmanned aerial vehicle (UAV) that images free-floating aerosol particles in the atmosphere. Using digital holography, the instrument obtains the images in a non-contact manner, resolving particles larger than ten micrometers in size in a sensing volume of approximately three cubic centimeters. The instrument, called the holographic aerosol particle imager (HAPI), has the unique ability to image multiple particles freely entering its sensing volume from any direction via a single measurement. The construction of HAPI consists of 3D printed polymer structures that enable a sufficiently low size and weight that it may be flown on a commercial-grade UAV. Examples from field trials of HAPI show images of freshly emitted tree pollen and mineral dust.

摘要

气溶胶颗粒及其在大气中的负载缺乏定量表征是气候变化科学中最大的不确定性之一。为了减少这种不确定性,需要能够确定气溶胶颗粒大小和形状的改进型仪器。我们描述了一种由无人机(UAV)搭载的新型仪器,它可以对大气中自由漂浮的气溶胶颗粒进行成像。该仪器利用数字全息术以非接触方式获取图像,在大约三立方厘米的传感体积内分辨出尺寸大于十微米的颗粒。这种名为全息气溶胶颗粒成像仪(HAPI)的仪器具有独特能力,能够通过单次测量对从任何方向自由进入其传感体积的多个颗粒进行成像。HAPI的构造由3D打印的聚合物结构组成,其尺寸和重量足够小,可以搭载在商业级无人机上飞行。HAPI现场试验的示例展示了新排放的树花粉和矿物粉尘的图像。

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