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Tropical Cyclones and Climate Change Assessment
by
Chan, Johnny C. L.
, Kossin, James
, Emanuel, Kerry
, Camargo, Suzana J.
, Wu, Liguang
, Knutson, Thomas
, Ho, Chang-Hoi
, Sugi, Masato
, Mohapatra, Mrutyunjay
, Satoh, Masaki
, Walsh, Kevin
in
Anthropogenic factors
/ Climate change
/ Climate models
/ Confidence
/ Confidence intervals
/ Cyclones
/ Environmental assessment
/ Global warming
/ Human influences
/ Hurricanes
/ Influence
/ Relative humidity
/ Resolution
/ Sea level
/ Sea level rise
/ Storms
/ Surface wind
/ Tropical climate
/ Tropical climates
/ Tropical cyclone intensities
/ Tropical cyclones
/ Water vapor
/ Water vapour
/ Wind speed
2020
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Tropical Cyclones and Climate Change Assessment
by
Chan, Johnny C. L.
, Kossin, James
, Emanuel, Kerry
, Camargo, Suzana J.
, Wu, Liguang
, Knutson, Thomas
, Ho, Chang-Hoi
, Sugi, Masato
, Mohapatra, Mrutyunjay
, Satoh, Masaki
, Walsh, Kevin
in
Anthropogenic factors
/ Climate change
/ Climate models
/ Confidence
/ Confidence intervals
/ Cyclones
/ Environmental assessment
/ Global warming
/ Human influences
/ Hurricanes
/ Influence
/ Relative humidity
/ Resolution
/ Sea level
/ Sea level rise
/ Storms
/ Surface wind
/ Tropical climate
/ Tropical climates
/ Tropical cyclone intensities
/ Tropical cyclones
/ Water vapor
/ Water vapour
/ Wind speed
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Tropical Cyclones and Climate Change Assessment
by
Chan, Johnny C. L.
, Kossin, James
, Emanuel, Kerry
, Camargo, Suzana J.
, Wu, Liguang
, Knutson, Thomas
, Ho, Chang-Hoi
, Sugi, Masato
, Mohapatra, Mrutyunjay
, Satoh, Masaki
, Walsh, Kevin
in
Anthropogenic factors
/ Climate change
/ Climate models
/ Confidence
/ Confidence intervals
/ Cyclones
/ Environmental assessment
/ Global warming
/ Human influences
/ Hurricanes
/ Influence
/ Relative humidity
/ Resolution
/ Sea level
/ Sea level rise
/ Storms
/ Surface wind
/ Tropical climate
/ Tropical climates
/ Tropical cyclone intensities
/ Tropical cyclones
/ Water vapor
/ Water vapour
/ Wind speed
2020
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Journal Article
Tropical Cyclones and Climate Change Assessment
2020
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Overview
Model projections of tropical cyclone (TC) activity response to anthropogenic warming in climate models are assessed. Observations, theory, and models, with increasing robustness, indicate rising global TC risk for some metrics that are projected to impact multiple regions. A 2°C anthropogenic global warming is projected to impact TC activity as follows. 1) The most confident TC-related projection is that sea level rise accompanying the warming will lead to higher storm inundation levels, assuming all other factors are unchanged. 2) For TC precipitation rates, there is at least medium-to-high confidence in an increase globally, with a median projected increase of 14%, or close to the rate of tropical water vapor increase with warming, at constant relative humidity. 3) For TC intensity, 10 of 11 authors had at least medium-to-high confidence that the global average will increase. The median projected increase in lifetime maximum surface wind speeds is about 5% (range: 1%–10%) in available higher-resolution studies. 4) For the global proportion (as opposed to frequency) of TCs that reach very intense (category 4–5) levels, there is at least medium-to-high confidence in an increase, with a median projected change of +13%. Author opinion was more mixed and confidence levels lower for the following projections: 5) a further poleward expansion of the latitude of maximum TC intensity in the western North Pacific; 6) a decrease of global TC frequency, as projected in most studies; 7) an increase in global very intense TC frequency (category 4–5), seen most prominently in higher-resolution models; and 8) a slowdown in TC translation speed.
Publisher
American Meteorological Society
Subject
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