Spatial Variation in the Synoptic Structure of Convective Systems over the Great Plains

Author:

Verevkin Iaroslav1ORCID,Folkins Ian1

Affiliation:

1. a Department of Physics and Atmospheric Science, Dalhousie University, Halifax, Nova Scotia, Canada

Abstract

Abstract During the summer, rainfall over the Rocky Mountains peaks in the afternoon. The diurnal time of maximum rain becomes progressively delayed in going eastward from the Rocky Mountains, such that over much of the Great Plains, maximum rain occurs near 0300 local time. We use Rapid Refresh (RAP) reanalysis data from July and August of 2009–19 to show that there is continuous spatial variation in the mean structure of the high-rain events that occur along this anomalous diurnally propagating rainfall feature. High-rain events that occur farther from the Rockies are more likely to be associated with a larger warm anomaly to the south of the rain event center, a smaller cold anomaly, a larger negative surface pressure anomaly, and increased low-level southerly meridional wind. We also use the Integrated Multi-Satellite Retrievals for GPM (IMERG) rainfall dataset to show that, on hourly time scales, afternoon rainfall that occurs over the Rocky Mountains propagates eastward onto the Great Plains but is rapidly attenuated and becomes negligible east of 100°W. This eastward rainfall propagation appears to be mediated in part by the formation of a low-level cold anomaly and increased surface pressure over the Rocky Mountains, a reversal of the upslope wind, and increased low-level zonal mass convergence over the adjacent near plains. Significance Statement Models have difficulty in simulating the diurnal time of nocturnal rainfall over the Great Plains. Deep convection in this region is often associated with severe weather. Rainfall variability over the Great Plains has a significant impact on soil moisture and agricultural productivity. This paper explores how the structure of deep convective rain events over the Great Plains varies with longitude. The results improve our understanding of deep convection development in the Great Plains and have the potential to contribute to improved forecasts of convective rainfall.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference52 articles.

1. Evaluation of satellite-retrieved extreme precipitation rates across the central United States;AghaKouchak, A.,2011

2. Lower-tropospheric precursors to nocturnal MCS development over the central United States;Augustine, J. A.,1994

3. The use of moisture flux convergence in forecasting convective initiation: Historical and operational perspectives;Banacos, P. C.,2005

4. A North American hourly assimilation and model forecast cycle: The Rapid Refresh;Benjamin, S. G.,2016

5. Rainfall occurrence in the U.S. warm season: The diurnal cycle;Carbone, R. E.,2008

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