+ All Categories
Home > Documents > Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of...

Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of...

Date post: 13-Dec-2015
Category:
Upload: patricia-cox
View: 217 times
Download: 0 times
Share this document with a friend
Popular Tags:
29
Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami ts of Environmental Flow and Initial Vo Eyewall Replacements in Tropical Cyclo 2004 Western Pacific Geophysics Meeting, Honolulu, 16-20 Augu
Transcript
Page 1: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Shuyi S. ChenJoseph Tenerelli

Rosenstiel School of Marine and Atmospheric ScienceUniversity of Miami

Effects of Environmental Flow and Initial Vortex on Eyewall Replacements in Tropical Cyclones

2004 Western Pacific Geophysics Meeting, Honolulu, 16-20 August

Page 2: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

NOAA/HRD&AOC Radar Composites in Hurricane Isabel (2003)

9/12/03 1700 UTC 9/12/03 2000 UTC 9/13/03 1600 UTC

9/13/03 1800 UTC 9/14/03 1600 UTC 9/14/03 2000 UTC

Page 3: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

NOAA/HRD&AOC Radar Composites in Hurricane Lili (2002)

10/02 0600

10/02 0900

10/02 1800

10/02 1900

10/02 1700

10/03 1500

Page 4: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Hurricane Floyd (1999)

MM5

Page 5: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Hurricane Floyd (1999)

Page 6: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 7: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Isabel (2003) Floyd (1999)

Page 8: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Isabel (2003) Floyd (1999)

Page 9: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 10: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

What are the impacts of initial vortex size on intensity, inner core structure and eyewall cycles of simulated tropical cyclones?

Page 11: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 12: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 13: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 14: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 15: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Model Configuration

• Eliminate land; set terrain height to zero.

• Set SST to constant 303 K.

• Turn off shortwave radiation.

• Retain longwave radiation.

• Fix Coriolis force at 5x10-5 s-1.

• Eliminate curvature terms.

• Set the map scale factor to unity.

Page 16: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 17: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 18: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Surface Rain Rate

Page 19: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.
Page 20: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Moist Potential Vorticity

Page 21: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

What is the influence of environmental flow on the inner core structure and eyewall cycles of simulated tropical cyclones?

• Moisture• Vertical wind shear

Page 22: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Mean RH Profiles

Derek and Chen (2004):NOAA/G-IV GPS dropsondes (49 flights and 1002 dropsondes, mostly taken in the TC environment outside of 300 km radius from TC centers)

Page 23: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Intensity

(a) pressure (b) wind speed

Chen&Desflots (UM/RSMAS)

Page 24: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Chen&Desflots (UM/RSMAS)

Page 25: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Chen&Desflots (UM/RSMAS)

Page 26: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Eyewall Evolution in Lili (2002)pressure

Page 27: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Shear Analysis in Lili (2002)

SLP : 943.9mbSHEAR:0.55m/s

SLP : 943.9mbSHEAR:2.8m/s

SLP : 944.4mbSHEAR:4.4m/s

SLP : 948.9mbSHEAR:7m/s

SLP : 953.1mbSHEAR:9m/s

SLP : 955.1mbSHEAR:9.2m/s

Page 28: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

RainfallMoist simulationControl runDry simulation

Page 29: Shuyi S. Chen Joseph Tenerelli Rosenstiel School of Marine and Atmospheric Science University of Miami Effects of Environmental Flow and Initial Vortex.

Conclusions• Initial vortex structure seems to have a significant

influence on the evolution of TC inner core and eyewall replacements .

• Minimum SLP is only weakly dependent upon initial vortex size, whereas maximum wind speed exhibits some variability between runs, with higher speeds for smaller vortices.

• Influence of environmental moisture distribution and vertical wind shear on eyewall cycles is complex and storm-dependent.

Questions: Are we any better in predicting TCintensity changes than a decade ago?Yes, ……but, …….


Recommended