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Article

Vorticity Budget and Formation Mechanisms of a Mesoscale Convective Vortex in a Heavy-Rainstorm Episode

1
Nanjing Meteorology Bureau, Nanjing 210019, China
2
State Key Lab of Severe Weather, Chinese Academy of Meteorological Sciences, Beijing 100081, China
3
Nanjing Joint Institute for Atmospheric Sciences, Chinese Academy of Meteorological Sciences, Nanjing 210000, China
4
School of Atmospheric Sciences, Nanjing University, Nanjing 210023, China
*
Authors to whom correspondence should be addressed.
Atmosphere 2022, 13(4), 556; https://doi.org/10.3390/atmos13040556
Submission received: 7 March 2022 / Revised: 27 March 2022 / Accepted: 29 March 2022 / Published: 30 March 2022
(This article belongs to the Special Issue Meteorological Extremes in China)

Abstract

Mesoscale convective vortices (MCVs) often cause rainstorms. To deepen our understanding of MCV formation mechanisms, reanalysis data from the National Centers for Environmental Prediction and the Weather Research and Forecasting model were used to simulate MCV activity in East China in August 2009. The simulations could reproduce the MCV and associated convective activities well. The vorticity budget and MCV formation mechanisms were then analyzed. The results show that the planetary vorticity advection is much smaller than other terms of the vorticity equation. The MCV initiates in the convective precipitation region and below 800 hPa. When the MCV initiates, there are vorticity-variation couplets within the vortex, and the MCV moves towards the positive vorticity-variation direction. In positive vorticity-variation areas, the divergence term and the tilting term are the vorticity source. The equilibrium response to diabatic heating is one of the forming mechanisms of this MCV. The latent-heating level is relatively low in this MCV case, and the MCV-forming level is also relatively low. Another forming mechanism of this MCV is the tilting of the horizontal vortex tube caused by the upward motion. At the MCV initiation, the perturbation scale of the vortex is found to be larger than the Rossby deformation radius, and thus the MCV could have a long duration.
Keywords: mesoscale convective vortex; vorticity budget; latent heat; horizontal vortex tube mesoscale convective vortex; vorticity budget; latent heat; horizontal vortex tube

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MDPI and ACS Style

Shu, Y.; Sun, J.; Jin, C.; Zhuang, B. Vorticity Budget and Formation Mechanisms of a Mesoscale Convective Vortex in a Heavy-Rainstorm Episode. Atmosphere 2022, 13, 556. https://doi.org/10.3390/atmos13040556

AMA Style

Shu Y, Sun J, Jin C, Zhuang B. Vorticity Budget and Formation Mechanisms of a Mesoscale Convective Vortex in a Heavy-Rainstorm Episode. Atmosphere. 2022; 13(4):556. https://doi.org/10.3390/atmos13040556

Chicago/Turabian Style

Shu, Yu, Jisong Sun, Chenlu Jin, and Bingliang Zhuang. 2022. "Vorticity Budget and Formation Mechanisms of a Mesoscale Convective Vortex in a Heavy-Rainstorm Episode" Atmosphere 13, no. 4: 556. https://doi.org/10.3390/atmos13040556

APA Style

Shu, Y., Sun, J., Jin, C., & Zhuang, B. (2022). Vorticity Budget and Formation Mechanisms of a Mesoscale Convective Vortex in a Heavy-Rainstorm Episode. Atmosphere, 13(4), 556. https://doi.org/10.3390/atmos13040556

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