This contribution summarizes key research advances on tropical cyclone (TC) intensity change from 20142018 from the Ninth International Workshop on Tropical Cyclones (IWTC-9). Research advances on intensity change have occurred on many fronts, including improved understanding of the role of vertical wind shear (VWS) and its impact on convection, surface fluxes, ocean eddies, dry/dusty air intrusions, eyewall replacement cycles (ERCs), spiral rainband dynamics, eyewall instability and inner-core mixing, and the mechanisms by which TCs intensify. This summary highlights a number of these important advances. Additionally, some new and emerging topics on TC intensity change have recently been elucidated: the important role of vortex structure on the subsequent intensification rate, the maximum potential intensification rate (MPIR), and the role of upper level outflow on TC intensity change.
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Shanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological AdministrationShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
MARIE-DOMINIQUE LEROUX
KIMBERLY WOOD
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Météo-France DIROI/ECShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
KIMBERLY WOOD
RUSSELL L.ELSBERRY
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Mississippi State UniversityShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
RUSSELL L.ELSBERRY
ESPERANZA O.CAYANAN
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University of Colorado-Colorado SpringsShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
ESPERANZA O.CAYANAN
ERIC HENDRICKS
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Philippine Atmospheric, Geophysical and Astronomical Services AdministrationShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
ERIC HENDRICKS
MATTHEW KUCAS
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Naval Postgraduate SchoolShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
MATTHEW KUCAS
PETER OTTO
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Joint Typhoon Warning CenterShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
PETER OTTO
ROBERT ROGERS
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Bureau of MeteorologyShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
ROBERT ROGERS
BUCK SAMPSON
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NOAA/AOML/Hurricane Research DivisionShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
BUCK SAMPSON
ZIFENG YU
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Naval Research LaboratoryShanghai Typhoon Institute and Laboratory of Typhoon Forecast Technique, China Meteorological Administration
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Meteo France DIROI EC, La Reunion, FranceMeteo France DIROI EC, La Reunion, France
Leroux, Marie-Dominique
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Wood, Kimberly
Elsberry, Russell L.
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Univ Colorado, Colorado Springs, CO 80907 USAMeteo France DIROI EC, La Reunion, France
Elsberry, Russell L.
Cayanan, Esperanza O.
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Philippine Atmospher Geophys & Astron Serv Adm, Manila, PhilippinesMeteo France DIROI EC, La Reunion, France
Cayanan, Esperanza O.
Hendricks, Eric
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Naval Postgrad Sch, Monterey, CA USAMeteo France DIROI EC, La Reunion, France
Hendricks, Eric
Kucas, Matthew
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Joint Typhoon Warning Ctr, Honolulu, HI USAMeteo France DIROI EC, La Reunion, France
Kucas, Matthew
Otto, Peter
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Bur Meteorol, Melbourne, Vic, AustraliaMeteo France DIROI EC, La Reunion, France
Otto, Peter
Rogers, Robert
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NOAA, AOML, Hurricane Res Div, Miami, FL USAMeteo France DIROI EC, La Reunion, France
Rogers, Robert
Sampson, Buck
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Naval Res Lab, Monterey, CA USAMeteo France DIROI EC, La Reunion, France
Sampson, Buck
Yu, Zifeng
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China Meteorol Adm, Shanghai Typhoon Inst, Shanghai, Peoples R China
China Meteorol Adm, Lab Typhoon Forecast Tech, Shanghai, Peoples R ChinaMeteo France DIROI EC, La Reunion, France