Quantifying hail size distributions from the sky – application of drone aerial photogrammetry

Author:

Soderholm Joshua S.,Kumjian Matthew R.,McCarthy Nicholas,Maldonado Paula,Wang Minzheng

Abstract

Abstract. A new technique, named “HailPixel”, is introduced for measuring the maximum dimension and intermediate dimension of hailstones from aerial imagery. The photogrammetry procedure applies a convolutional neural network for robust detection of hailstones against complex backgrounds and an edge detection method for measuring the shape of identified hailstones. This semi-automated technique is capable of measuring many thousands of hailstones within a single survey, which is several orders of magnitude larger (e.g. 10 000 or more hailstones) than population sizes from existing sensors (e.g. a hail pad). Comparison with a co-located hail pad for an Argentinian hailstorm event during the RELAMPAGO project demonstrates the larger population size of the HailPixel survey significantly improves the shape and tails of the observed hail size distribution. When hail fall is sparse, such as during large and giant hail events, the large survey area of this technique is especially advantageous for resolving the hail size distribution.

Funder

Amazon Web Services

Division of Atmospheric and Geospace Sciences

Publisher

Copernicus GmbH

Subject

Atmospheric Science

Reference31 articles.

1. Bemis, S. P., Micklethwaite, S., Turner, D., James, M. R., Akciz, S., Thiele, S. T., and Bangash, H. A.: Ground-based and UAV-Based photogrammetry: A multi-scale, high-resolution mapping tool for structural geology and paleoseismology, J. Struct. Geol., 69, 163–178, https://doi.org/10.1016/j.jsg.2014.10.007, 2014. a

2. Brown, T. M., Giammanco, I. M., and Kumjian, M. R.: IBHS Hail Field Research Program: 2012–2014, in: 27th Conference on Severe Local Storms, November, 2012–2014, American Meteorological Society, Madison, WI, 2014. a

3. Changnon, S. A., Changnon, D., Ray Fosse, E., Hoganson, D. C., Roth, R. J., and Totsch, J. M.: Effects of Recent Weather Extremes on the Insurance Industry: Major Implications for the Atmospheric Sciences, B. Am. Meteorol. Soc., 78, 425–435, https://doi.org/10.1175/1520-0477(1997)078<0425:EORWEO>2.0.CO;2, 1997. a

4. Cheng, H., Jiang, X., Sun, Y., and Wang, J.: Color image segmentation: advances and prospects, Pattern Recogn., 34, 2259–2281, https://doi.org/10.3346/jkms.2018.33.e6, 2001. a

5. Cheng, L. and English, M.: A Relationship Between Hailstone Concentration and Size, J. Atmos. Sci., 40, 204–213, https://doi.org/10.1175/1520-0469(1983)040<0204:arbhca>2.0.co;2, 1983. a

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