Spatial variability of extreme rainfall at radar subpixel scale
Peleg N, Marra F, Fatichi S, Paschalis A, Molnar P, Burlando P. 2018. Spatial variability of extreme rainfall at radar subpixel scale. Journal of Hydrology. 556, 922–933.
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Journal Article
| Published
| English
Scopus indexed
Author
Peleg, Nadav;
Marra, Francesco;
Fatichi, SimoneISTA;
Paschalis, Athanasios;
Molnar, Peter;
Burlando, Paolo
Abstract
Extreme rainfall is quantified in engineering practice using Intensity–Duration–Frequency curves (IDF) that are traditionally derived from rain-gauges and more recently also from remote sensing instruments, such as weather radars. These instruments measure rainfall at different spatial scales: rain-gauge samples rainfall at the point scale while weather radar averages precipitation on a relatively large area, generally around 1 km2. As such, a radar derived IDF curve is representative of the mean areal rainfall over a given radar pixel and neglects the within-pixel rainfall variability. In this study, we quantify subpixel variability of extreme rainfall by using a novel space–time rainfall generator (STREAP model) that downscales in space the rainfall within a given radar pixel. The study was conducted using a unique radar data record (23 years) and a very dense rain-gauge network in the Eastern Mediterranean area (northern Israel). Radar–IDF curves, together with an ensemble of point-based IDF curves representing the radar subpixel extreme rainfall variability, were developed fitting Generalized Extreme Value (GEV) distributions to annual rainfall maxima. It was found that the mean areal extreme rainfall derived from the radar underestimate most of the extreme values computed for point locations within the radar pixel (on average, ∼70%). The subpixel variability of rainfall extreme was found to increase with longer return periods and shorter durations (e.g. from a maximum variability of 10% for a return period of 2 years and a duration of 4 h to 30% for 50 years return period and 20 min duration). For the longer return periods, a considerable enhancement of extreme rainfall variability was found when stochastic (natural) climate variability was taken into account. Bounding the range of the subpixel extreme rainfall derived from radar–IDF can be of major importance for different applications that require very local estimates of rainfall extremes.
Keywords
Publishing Year
Date Published
2018-01-01
Journal Title
Journal of Hydrology
Publisher
Elsevier
Volume
556
Page
922-933
ISSN
eISSN
IST-REx-ID
Cite this
Peleg N, Marra F, Fatichi S, Paschalis A, Molnar P, Burlando P. Spatial variability of extreme rainfall at radar subpixel scale. Journal of Hydrology. 2018;556:922-933. doi:10.1016/j.jhydrol.2016.05.033
Peleg, N., Marra, F., Fatichi, S., Paschalis, A., Molnar, P., & Burlando, P. (2018). Spatial variability of extreme rainfall at radar subpixel scale. Journal of Hydrology. Elsevier. https://doi.org/10.1016/j.jhydrol.2016.05.033
Peleg, Nadav, Francesco Marra, Simone Fatichi, Athanasios Paschalis, Peter Molnar, and Paolo Burlando. “Spatial Variability of Extreme Rainfall at Radar Subpixel Scale.” Journal of Hydrology. Elsevier, 2018. https://doi.org/10.1016/j.jhydrol.2016.05.033.
N. Peleg, F. Marra, S. Fatichi, A. Paschalis, P. Molnar, and P. Burlando, “Spatial variability of extreme rainfall at radar subpixel scale,” Journal of Hydrology, vol. 556. Elsevier, pp. 922–933, 2018.
Peleg N, Marra F, Fatichi S, Paschalis A, Molnar P, Burlando P. 2018. Spatial variability of extreme rainfall at radar subpixel scale. Journal of Hydrology. 556, 922–933.
Peleg, Nadav, et al. “Spatial Variability of Extreme Rainfall at Radar Subpixel Scale.” Journal of Hydrology, vol. 556, Elsevier, 2018, pp. 922–33, doi:10.1016/j.jhydrol.2016.05.033.