Lidar-Derived Particle Concentrations in Plumes from Arctic Leads

Author:

Andreas Edgar L.,Miles Martin W.,Barry Roger G.,Schnell Russell C.

Abstract

With an airborne lidar, we have observed massive plumes of condensate particles rising from wintertime leads in the Arctic Ocean. Some of these plumes reached an altitude of 4 km; some extended over 200 km down-wind from their surface source. Here we invert the lidar equation and use lidar backscatter data to infer particle concentrations within two such plumes. Assuming that the plumes consist of supercooled water droplets of radius 5 μm, we estimate typical concentrations of 3–6 × 105 droplets m-3 just above the leads. Concentrations within the plumes can still be as high as 104 droplets m-3 at an altitude of 3 km and 200 km down-wind from some leads. Had we assumed that the plume particles are ice spheres of radius 40 μm, concentrations would be just 100 times less than these.

Publisher

International Glaciological Society

Subject

Earth-Surface Processes

Cited by 27 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The influence of the spatial distribution of leads and ice floes on the atmospheric boundary layer over fragmented sea ice;Annals of Glaciology;2018-07

2. Measuring turbulent heat fluxes over leads using kites;Journal of Geophysical Research;2007-05-11

3. Plate Section;The Arctic Climate System;2005-10-13

4. List of selected websites;The Arctic Climate System;2005-10-13

5. References;The Arctic Climate System;2005-10-13

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