Discriminant Analysis for Severe Storm Environments in South-Central Brazil

Author:

dos Santos Letícia O.1ORCID,Nascimento Ernani L.1,Allen John T.2

Affiliation:

1. a Grupo de Modelagem Atmosférica, Departamento de Física, Universidade Federal de Santa Maria, Santa Maria, Rio Grande do Sul, Brazil

2. b Department of Earth and Atmospheric Sciences, Central Michigan University, Mount Pleasant, Michigan

Abstract

Abstract Severe storms produce hazardous weather phenomena, such as large hail, damaging winds, and tornadoes. However, relationships between convective parameters and confirmed severe weather occurrences are poorly quantified in south-central Brazil. This study explores severe weather reports and measurements from newly available datasets. Hail, damaging wind, and tornado reports are sourced from the PREVOTS project from June 2018 to December 2021, while measurements of convectively induced wind gusts from 1996 to 2019 are obtained from METAR reports and from Brazil’s operational network of automated weather stations. Proximal convective parameters were computed from ERA5 reanalysis for these reports and used to perform a discriminant analysis using mixed-layer CAPE and deep-layer shear (DLS). Compared to other regions, thermodynamic parameters associated with severe weather episodes exhibit lower magnitudes in south-central Brazil. DLS displays better performance in distinguishing different types of hazardous weather, but does not discriminate well between distinct severity levels. To address the sensitivity of the discriminant analysis to distinct environmental regimes and hazard types, five different discriminants are assessed. These include discriminants for any severe storm, severe hail only, severe wind gust only, and all environments but broken into “high” and “low” CAPE regimes. The best performance of the discriminant analysis is found for the “high” CAPE regime, followed by the severe wind regime. All discriminants demonstrate that DLS plays a more important role in conditioning Brazilian severe storm environments than other regions, confirming the need to ensure that parameters and discriminants are tuned to local severe weather conditions.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fulbright Brazil

National Science Foundation

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference87 articles.

1. A climatology of Australian severe thunderstorm environments 1979–2011: Inter-annual variability and ENSO influence;Allen, J. T.,2014

2. The characteristics of the United States hail reports: 1955–2014;Allen, J. T.,2015

3. A severe thunderstorm climatology for Australia and associated thunderstorm environments;Allen, J. T.,2011

4. An empirical model relating U.S. monthly hail occurrence to large-scale meteorological environment;Allen, J. T.,2015

5. Australian tornadoes in 2013: Implications for climatology and forecasting;Allen, J. T.,2021

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