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Evaluation of Operational and Experimental Precipitation Algorithms and Microphysical Insights during IPHEx.

Authors :
Erlingis, Jessica M.
Gourley, Jonathan J.
Kirstetter, Pierre-Emmanuel
Anagnostou, Emmanouil N.
Kalogiros, John
Anagnostou, Marios N.
Petersen, Walt
Source :
Journal of Hydrometeorology. Jan2018, Vol. 19 Issue 1, p113-125. 13p.
Publication Year :
2018

Abstract

During May and June 2014, NOAA X-Pol (NOXP), the National Severe Storms Laboratory's dualpolarized X-band mobile radar, was deployed to the Pigeon River basin in the Great Smoky Mountains of North Carolina as part of the NASA Integrated Precipitation and Hydrology Experiment. Rain gauges and disdrometers were positioned within the basin to verify precipitation estimates from various radar and satellite precipitation algorithms. First, the performance of the Self-Consistent Optimal Parameterization-Microphysics Estimation (SCOP-ME) algorithm for NOXP was examined using ground instrumentation as validation and was found to perform similarly to or slightly outperform other precipitation algorithms over the course of the intensive observation period (IOP). Radar data were also used to examine ridge-valley differences in radar and microphysical parameters for a case of stratiform precipitation passing over the mountains. Inferred coalescence microphysical processes were found to dominate within the upslope region, while a combination of processes were present as the system propagated over the valley. This suggests that enhanced updrafts aided by orographic lift sustain convection over the upslope regions, leading to larger median drop diameters. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1525755X
Volume :
19
Issue :
1
Database :
Academic Search Index
Journal :
Journal of Hydrometeorology
Publication Type :
Academic Journal
Accession number :
128554975
Full Text :
https://doi.org/10.1175/JHM-D-17-0080.1