The Role of WISHE in Secondary Eyewall Formation

Author:

Cheng Chieh-Jen1,Wu Chun-Chieh1

Affiliation:

1. Department of Atmospheric Sciences, National Taiwan University, Taipei, Taiwan

Abstract

Abstract Numerical simulations are conducted to examine the role of the wind-induced surface heat exchange (WISHE) mechanism in secondary eyewall formation (SEF). The control experiment exhibits a coherent secondary eyewall structure as quantified by various parameters (e.g., the azimuthal-mean tangential wind and vertical velocity). Prior to SEF, an area characterized by increasing diabatic heating, enhanced inertial stability, and increasing supergradient winds at the top of the boundary layer is observed outside the eyewall. While these characteristics offer the possibility of both balanced and unbalanced dynamical pathways to SEF, the focus of this study is to evaluate the impact of WISHE. To examine the sensitivity of SEF to WISHE, the surface wind used for the calculation of surface heat fluxes is capped at several designated values and at different radial intervals. When the heat fluxes are moderately suppressed around and outside the SEF region observed in the control experiment, sensitivity experiments show that the formation of the outer eyewall is delayed, and the intensity of both eyewalls is weaker. When the heat fluxes are strongly suppressed in the same region, SEF does not occur. In contrast, suppressing the surface heat fluxes in the storm’s inner-core region has limited effect on the evolution of the outer eyewall. This study provides important physical insight into SEF, indicating that WISHE plays a crucial role in SEF and tropical cyclone evolution.

Funder

Ministry of Science and Technology, Taiwan

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference41 articles.

1. Essential dynamics of secondary eyewall formation;Abarca;J. Atmos. Sci.,2013

2. American Meteorological Society, 2013: Wind-induced surface heat exchange. Glossary of Meteorology, http://glossary.ametsoc.org/wiki/Wind-induced_surface_heat_exchange.

3. An axisymmetric view of concentric eyewall evolution in Hurricane Rita (2005);Bell;J. Atmos. Sci.,2012

4. Kinematics of the secondary eyewall observed in Hurricane Rita (2005);Didlake;J. Atmos. Sci.,2011

5. Numerical study of convection observed during the Winter Monsoon Experiment using a mesoscale two-dimensional model;Dudhia;J. Atmos. Sci.,1989

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