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Observed Tropical Cyclone Size Revisited
by
Chavas, Daniel R.
, Dong, Wenhao
, Lin, Yanluan
, Lin, Ning
in
Climate change
/ Context
/ Coriolis parameters
/ Cyclones
/ Datasets
/ Empirical analysis
/ Environmental factors
/ Environmental parameters
/ Global warming
/ Humidity
/ Hurricanes
/ Parameter identification
/ Parameters
/ Pressure dependence
/ Risk assessment
/ Scaling
/ Sea surface
/ Sea surface temperature
/ Statistical distributions
/ Statistical methods
/ Storm winds
/ Storms
/ Surface temperature
/ Tropical climate
/ Tropical climates
/ Tropical cyclones
/ Upper bounds
/ Wind
/ Wind fields
/ Winds
2016
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Observed Tropical Cyclone Size Revisited
by
Chavas, Daniel R.
, Dong, Wenhao
, Lin, Yanluan
, Lin, Ning
in
Climate change
/ Context
/ Coriolis parameters
/ Cyclones
/ Datasets
/ Empirical analysis
/ Environmental factors
/ Environmental parameters
/ Global warming
/ Humidity
/ Hurricanes
/ Parameter identification
/ Parameters
/ Pressure dependence
/ Risk assessment
/ Scaling
/ Sea surface
/ Sea surface temperature
/ Statistical distributions
/ Statistical methods
/ Storm winds
/ Storms
/ Surface temperature
/ Tropical climate
/ Tropical climates
/ Tropical cyclones
/ Upper bounds
/ Wind
/ Wind fields
/ Winds
2016
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Do you wish to request the book?
Observed Tropical Cyclone Size Revisited
by
Chavas, Daniel R.
, Dong, Wenhao
, Lin, Yanluan
, Lin, Ning
in
Climate change
/ Context
/ Coriolis parameters
/ Cyclones
/ Datasets
/ Empirical analysis
/ Environmental factors
/ Environmental parameters
/ Global warming
/ Humidity
/ Hurricanes
/ Parameter identification
/ Parameters
/ Pressure dependence
/ Risk assessment
/ Scaling
/ Sea surface
/ Sea surface temperature
/ Statistical distributions
/ Statistical methods
/ Storm winds
/ Storms
/ Surface temperature
/ Tropical climate
/ Tropical climates
/ Tropical cyclones
/ Upper bounds
/ Wind
/ Wind fields
/ Winds
2016
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Journal Article
Observed Tropical Cyclone Size Revisited
2016
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Overview
This work revisits the statistics of observed tropical cyclone outer size in the context of recent advances in our theoretical understanding of the storm wind field. The authors create a new dataset of the radius of 12 m s−1 winds based on a recently updated version of the QuikSCAT ocean wind vector database and apply an improved analytical outer wind model to estimate the outer radius of vanishing wind. The dataset is then applied to analyze the statistical distributions of the two size metrics as well as their dependence on environmental parameters, with a specific focus on testing recently identified parameters possessing credible theoretical relationships with tropical cyclone size. The ratio of the potential intensity to the Coriolis parameter is found to perform poorly in explaining variation of size, with the possible exception of its upper bound, the latter of which is in line with existing theory. The rotating radiative–convective equilibrium scaling of Khairoutdinov and Emanuel is also found to perform poorly. Meanwhile, mean storm size is found to increase systematically with the relative sea surface temperature, in quantitative agreement with the results of a recent study of storm size based on precipitation area. Implications of these results are discussed in the context of existing tropical climate theory. Finally, an empirical dependence of the central pressure deficit on outer size is found in line with past work.
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