Analyzing Simulated Convective Bursts in Two Atlantic Hurricanes. Part I: Burst Formation and Development

Author:

Hazelton Andrew T.1,Rogers Robert F.2,Hart Robert E.1

Affiliation:

1. Department of Earth, Ocean and Atmospheric Science, The Florida State University, Tallahassee, Florida

2. NOAA/AOML/Hurricane Research Division, Miami, Florida

Abstract

Understanding the structure and evolution of the tropical cyclone (TC) inner core remains an elusive challenge in tropical meteorology, especially the role of transient asymmetric features such as localized strong updrafts known as convective bursts (CBs). This study investigates the formation of CBs and their role in TC structure and evolution using high-resolution simulations of two Atlantic hurricanes (Dean in 2007 and Bill in 2009) with the Weather Research and Forecasting (WRF) Model. Several different aspects of the dynamics and thermodynamics of the TC inner-core region are investigated with respect to their influence on TC convective burst development. Composites with CBs show stronger radial inflow in the lowest 2 km, and stronger radial outflow from the eye to the eyewall around z = 2–4 km, than composites without CBs. Asymmetric vorticity associated with eyewall mesovortices appears to be a major factor in some of the radial flow anomalies that lead to CB development. The anomalous outflow from these mesovortices, along with outflow from supergradient parcels above the boundary layer, favors low-level convergence and also appears to mix high- θ e air from the eye into the eyewall. Analyses of individual CBs and parcel trajectories show that parcels are pulled into the eye and briefly mix with the eye air. The parcels then rapidly move outward into the eyewall, and quickly ascend in CBs, in some cases with vertical velocities of over 20 m s−1. These results support the importance of horizontal asymmetries in forcing extreme asymmetric vertical velocity in tropical cyclones.

Funder

Florida State University

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference75 articles.

1. Aberson, S. D., M. T. Montgomery, and M. L. Black, 2004: A record wind measurement in Hurricane Isabel: Direct evidence of an eyewall mesocyclone? 26th Conf. on Tropical Meteorology, Miami, FL, Amer. Meteor. Soc., 5D.6. [Available online at https://ams.confex.com/ams/pdfpapers/75718.pdf.]

2. Eye Excess Energy and the Rapid Intensification of Hurricane Lili (2002)

3. Eastern Pacific Hurricanes Jimena of 1991 and Olivia of 1994: The Effect of Vertical Shear on Structure and Intensity

4. The Computation of Equivalent Potential Temperature

5. A Cloud-Resolving Simulation of Hurricane Bob (1991): Storm Structure and Eyewall Buoyancy

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