Author:
Kemppinen Osku,Laning Jesse C.,Mersmann Ryan D.,Videen Gorden,Berg Matthew J.
Abstract
AbstractThe 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.
Funder
National Science Foundation
Air Force Office of Scientific Research
Publisher
Springer Science and Business Media LLC
Reference63 articles.
1. Kulkarni, P., Baron, P. A. & Willeke, K. Aerosol Measurement: Principles, Techniques, and Applications (Wiley, Oxford, 2011).
2. Seinfeld, J. H. & Pandis, S. N. Atmospheric Chemistry and Physics: From Air Pollution to Climate Change (Wiley, Oxford, 2006).
3. Sorensen, C. M., Flagan, R. C., Baltensperger, U. & Pui, D. Y. H. Grand challenges for aerosol science and technology. Aerosol Sci. Tech. 53, 731–734 (2019).
4. Friedlander, S. K. Smoke, Dust, and Haze: Fundamentals of Aerosol Behavior (Wiley, Oxford, 1977).
5. Haywood, J. & Boucher, O. Estimates of the direct and indirect radiative forcing due to tropospheric aerosols: A review. Rev. Geophys. 38, 513–543 (2000).
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