Environmental hazards :: the fluid dynamics and geophysics of extreme events /
The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School, with a focus mainly o...
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Format: | Elektronisch Tagungsbericht E-Book |
Sprache: | English |
Veröffentlicht: |
Singapore :
World Scientific,
©2011.
|
Schriftenreihe: | Lecture notes series (National University of Singapore. Institute for Mathematical Sciences) ;
v. 21. |
Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School, with a focus mainly on tropical cyclones, tsunamis, monsoon flooding and atmospheric pollution, all within the context of climate variability and change. The book provides an introduction to these topics from both mathematical and geophysical points of view, and will be invaluable for graduate students in applied mathematics, geophysics and engineering with an interest in this broad field of study, as well as for seasoned researchers in adjacent fields. |
Beschreibung: | "The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School ..."--Back cover |
Beschreibung: | 1 online resource (xiv, 315 pages :) |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9789814313292 9814313297 1283433400 9781283433402 9786613433404 6613433403 |
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245 | 1 | 0 | |a Environmental hazards : |b the fluid dynamics and geophysics of extreme events / |c editors, H.K. Moffatt, Emily Shuckburgh. |
260 | |a Singapore : |b World Scientific, |c ©2011. | ||
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490 | 1 | |a Lecture notes series / Institute for Mathematical Sciences, National University of Singapore ; |v v. 21 | |
500 | |a "The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School ..."--Back cover | ||
504 | |a Includes bibliographical references and index. | ||
588 | 0 | |a Print version record. | |
520 | |a The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School, with a focus mainly on tropical cyclones, tsunamis, monsoon flooding and atmospheric pollution, all within the context of climate variability and change. The book provides an introduction to these topics from both mathematical and geophysical points of view, and will be invaluable for graduate students in applied mathematics, geophysics and engineering with an interest in this broad field of study, as well as for seasoned researchers in adjacent fields. | ||
505 | 0 | |a Foreword; Preface; 1. A Brief Introduction to Vortex Dynamics and Turbulence H. Keith Moffatt; 1. Introduction; 2. Vorticity and the Biot-Savart Law; 3. The Euler Equation and its Invariants; 4. The Stretched Vortex of Burgers (1948); 5. Kelvin-Helmholtz Instability; 6. Transient Instability and Streamwise Vortices; 7. Turbulence, Viewed as a Random Field of Vorticity; 8. The Kolmogorov-Obukhov Energy-Cascade Theory; Acknowledgments; References; 2. Geophysical and Environmental Fluid Dynamics Tieh-Yong Koh and Paul F. Linden; 1. Introduction; 2. Stratified Flows. | |
505 | 8 | |a 2.1. Surface Gravity Waves2.1.1. Dimensional analysis; 2.1.2. Exact dispersion relation; 2.2. Froude Number; 2.3. Stratification and Buoyancy Frequency; 2.4. Internal Gravity Waves; 2.5. Mountain Waves; 2.6. Mass, Momentum and Energy Fluxes; 3. Convection; 3.1. Unstable Stratification; 3.2. Parcel Argument; 3.3. Dimensional Analysis; 3.3.1. Rayleigh number; 3.4. Convection Strength; 3.5. High Rayleigh Number; 3.6. Very High Rayleigh Number; 4. Plumes; 4.1. Plumes-Dimensional Analysis; 4.2. Entrainment; 4.2.1. Entrainment assumption; 4.3. Self-similarity; 4.4. Plume Rise in a Stratified Fluid. | |
505 | 8 | |a 4.4.1. Dimensional analysis4.4.2. Impact on the external environment -- the "filling box"; 4.5. Fires; 5. Gravity Currents; 5.1. Horizontal Stratification; 5.2. Gravity Currents; 5.2.1. Dimensional analysis; 5.2.1.1. Constant velocity phase; 5.2.1.2. Similarity phase; 5.2.2. Laboratory verification; 5.3. The Front Froude Number; 6. Rotating Flows; 6.1. Rotating Frame and the Coriolis Force; 6.2. Inertial Oscillations; 6.3. Rossby Radius of Deformation and Eddies; 6.4. Buoyancy-Driven Coastal Currents; References; 3. Weather and Climate Emily Shuckburgh; 1. Introduction. | |
505 | 8 | |a 2. Forcing of the Atmosphere and Ocean Circulation2.1. Atmospheric Properties; 2.2. Solar Forcing; 2.3. Greenhouse Effect; 2.4. Radiative Transfer; 2.5. Climate Change; 2.6. Further Atmospheric Properties; 2.7. Oceanic Properties; 2.8. Ocean Forcing; 3. Dynamics of the Atmosphere and Oceans; 3.1. Role of Dynamics; 3.2. Rotating Fluids; 3.3. Weather and Climate Models; 3.4. Dynamical Processes; 3.5. General Circulation of the Atmosphere; 3.6. Ocean Circulation; 3.7. Tropical Ocean-Atmosphere Coupling; 4. Conclusions; References. | |
505 | 8 | |a 4. Dynamics of the Indian and Pacific Oceans Swadhin Behera and Toshio Yamagata1. Introduction; 2. The Tropical Climate Modes; 2.1. The ENSO; 2.2. The ENSO Modoki; 2.2.1. Ocean-atmosphere coupling; 2.2.2. ENSO Modoki vs ENSO impacts; 2.3. The Indian Ocean Dipole; 2.3.1. Ocean-atmosphere coupling; 2.3.2. Triggering and termination processes; 2.3.3. IOD impacts; 2.3.4. IOD predictions; 3. IOD, ENSO and ENSO Modoki Interactions; 4. Discussions; References; 5. The Hurricane-Climate Connection Kerry Emanuel; 1. Introduction; 2. Tropical Cyclone Variability in the Instrumental Record. | |
546 | |a English. | ||
650 | 0 | |a Climatic extremes |v Congresses. | |
650 | 0 | |a Atmospheric turbulence |v Congresses. | |
650 | 0 | |a Natural disasters |v Congresses. | |
650 | 0 | |a Fluid mechanics |v Congresses. | |
650 | 6 | |a Extrêmes (Météorologie) |v Congrès. | |
650 | 6 | |a Turbulence atmosphérique |v Congrès. | |
650 | 6 | |a Catastrophes naturelles |v Congrès. | |
650 | 6 | |a Mécanique des fluides |v Congrès. | |
650 | 7 | |a SCIENCE |x Earth Sciences |x Meteorology & Climatology. |2 bisacsh | |
650 | 7 | |a Atmospheric turbulence |2 fast | |
650 | 7 | |a Climatic extremes |2 fast | |
650 | 7 | |a Fluid mechanics |2 fast | |
650 | 7 | |a Natural disasters |2 fast | |
655 | 7 | |a Conference papers and proceedings |2 fast | |
700 | 1 | |a Moffatt, H. K. |q (Henry Keith), |d 1935- |0 http://id.loc.gov/authorities/names/n85008218 | |
700 | 1 | |a Shuckburgh, Emily. | |
710 | 2 | |a National University of Singapore. |b Institute for Mathematical Sciences. |0 http://id.loc.gov/authorities/names/no2003042730 | |
758 | |i has work: |a Environmental hazards (Text) |1 https://id.oclc.org/worldcat/entity/E39PCGpFvKVKCYXX7mQkFygBT3 |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
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author2 | Moffatt, H. K. (Henry Keith), 1935- Shuckburgh, Emily |
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author_corporate | Spring School on Fluid Dynamics and Geophysics of Environmental Hazards National University of Singapore National University of Singapore. Institute for Mathematical Sciences |
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author_facet | Moffatt, H. K. (Henry Keith), 1935- Shuckburgh, Emily Spring School on Fluid Dynamics and Geophysics of Environmental Hazards National University of Singapore National University of Singapore. Institute for Mathematical Sciences |
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contents | Foreword; Preface; 1. A Brief Introduction to Vortex Dynamics and Turbulence H. Keith Moffatt; 1. Introduction; 2. Vorticity and the Biot-Savart Law; 3. The Euler Equation and its Invariants; 4. The Stretched Vortex of Burgers (1948); 5. Kelvin-Helmholtz Instability; 6. Transient Instability and Streamwise Vortices; 7. Turbulence, Viewed as a Random Field of Vorticity; 8. The Kolmogorov-Obukhov Energy-Cascade Theory; Acknowledgments; References; 2. Geophysical and Environmental Fluid Dynamics Tieh-Yong Koh and Paul F. Linden; 1. Introduction; 2. Stratified Flows. 2.1. Surface Gravity Waves2.1.1. Dimensional analysis; 2.1.2. Exact dispersion relation; 2.2. Froude Number; 2.3. Stratification and Buoyancy Frequency; 2.4. Internal Gravity Waves; 2.5. Mountain Waves; 2.6. Mass, Momentum and Energy Fluxes; 3. Convection; 3.1. Unstable Stratification; 3.2. Parcel Argument; 3.3. Dimensional Analysis; 3.3.1. Rayleigh number; 3.4. Convection Strength; 3.5. High Rayleigh Number; 3.6. Very High Rayleigh Number; 4. Plumes; 4.1. Plumes-Dimensional Analysis; 4.2. Entrainment; 4.2.1. Entrainment assumption; 4.3. Self-similarity; 4.4. Plume Rise in a Stratified Fluid. 4.4.1. Dimensional analysis4.4.2. Impact on the external environment -- the "filling box"; 4.5. Fires; 5. Gravity Currents; 5.1. Horizontal Stratification; 5.2. Gravity Currents; 5.2.1. Dimensional analysis; 5.2.1.1. Constant velocity phase; 5.2.1.2. Similarity phase; 5.2.2. Laboratory verification; 5.3. The Front Froude Number; 6. Rotating Flows; 6.1. Rotating Frame and the Coriolis Force; 6.2. Inertial Oscillations; 6.3. Rossby Radius of Deformation and Eddies; 6.4. Buoyancy-Driven Coastal Currents; References; 3. Weather and Climate Emily Shuckburgh; 1. Introduction. 2. Forcing of the Atmosphere and Ocean Circulation2.1. Atmospheric Properties; 2.2. Solar Forcing; 2.3. Greenhouse Effect; 2.4. Radiative Transfer; 2.5. Climate Change; 2.6. Further Atmospheric Properties; 2.7. Oceanic Properties; 2.8. Ocean Forcing; 3. Dynamics of the Atmosphere and Oceans; 3.1. Role of Dynamics; 3.2. Rotating Fluids; 3.3. Weather and Climate Models; 3.4. Dynamical Processes; 3.5. General Circulation of the Atmosphere; 3.6. Ocean Circulation; 3.7. Tropical Ocean-Atmosphere Coupling; 4. Conclusions; References. 4. Dynamics of the Indian and Pacific Oceans Swadhin Behera and Toshio Yamagata1. Introduction; 2. The Tropical Climate Modes; 2.1. The ENSO; 2.2. The ENSO Modoki; 2.2.1. Ocean-atmosphere coupling; 2.2.2. ENSO Modoki vs ENSO impacts; 2.3. The Indian Ocean Dipole; 2.3.1. Ocean-atmosphere coupling; 2.3.2. Triggering and termination processes; 2.3.3. IOD impacts; 2.3.4. IOD predictions; 3. IOD, ENSO and ENSO Modoki Interactions; 4. Discussions; References; 5. The Hurricane-Climate Connection Kerry Emanuel; 1. Introduction; 2. Tropical Cyclone Variability in the Instrumental Record. |
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dewey-ones | 551 - Geology, hydrology, meteorology |
dewey-raw | 551.5 |
dewey-search | 551.5 |
dewey-sort | 3551.5 |
dewey-tens | 550 - Earth sciences |
discipline | Geologie / Paläontologie |
format | Electronic Conference Proceeding eBook |
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genre | Conference papers and proceedings fast |
genre_facet | Conference papers and proceedings |
id | ZDB-4-EBA-ocn775361373 |
illustrated | Illustrated |
indexdate | 2024-10-25T16:18:30Z |
institution | BVB |
institution_GND | http://id.loc.gov/authorities/names/no2011168679 http://id.loc.gov/authorities/names/no2003042730 |
isbn | 9789814313292 9814313297 1283433400 9781283433402 9786613433404 6613433403 |
language | English |
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physical | 1 online resource (xiv, 315 pages :) |
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publisher | World Scientific, |
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series | Lecture notes series (National University of Singapore. Institute for Mathematical Sciences) ; |
series2 | Lecture notes series / Institute for Mathematical Sciences, National University of Singapore ; |
spelling | Spring School on Fluid Dynamics and Geophysics of Environmental Hazards (2009 : National University of Singapore) http://id.loc.gov/authorities/names/no2011168679 Environmental hazards : the fluid dynamics and geophysics of extreme events / editors, H.K. Moffatt, Emily Shuckburgh. Singapore : World Scientific, ©2011. 1 online resource (xiv, 315 pages :) text txt rdacontent computer c rdamedia online resource cr rdacarrier Lecture notes series / Institute for Mathematical Sciences, National University of Singapore ; v. 21 "The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School ..."--Back cover Includes bibliographical references and index. Print version record. The Institute for Mathematical Sciences at the National University of Singapore hosted a Spring School on Fluid Dynamics and Geophysics of Environmental Hazards from 19 April to 2 May 2009. This volume contains the content of the nine short lecture courses given at this School, with a focus mainly on tropical cyclones, tsunamis, monsoon flooding and atmospheric pollution, all within the context of climate variability and change. The book provides an introduction to these topics from both mathematical and geophysical points of view, and will be invaluable for graduate students in applied mathematics, geophysics and engineering with an interest in this broad field of study, as well as for seasoned researchers in adjacent fields. Foreword; Preface; 1. A Brief Introduction to Vortex Dynamics and Turbulence H. Keith Moffatt; 1. Introduction; 2. Vorticity and the Biot-Savart Law; 3. The Euler Equation and its Invariants; 4. The Stretched Vortex of Burgers (1948); 5. Kelvin-Helmholtz Instability; 6. Transient Instability and Streamwise Vortices; 7. Turbulence, Viewed as a Random Field of Vorticity; 8. The Kolmogorov-Obukhov Energy-Cascade Theory; Acknowledgments; References; 2. Geophysical and Environmental Fluid Dynamics Tieh-Yong Koh and Paul F. Linden; 1. Introduction; 2. Stratified Flows. 2.1. Surface Gravity Waves2.1.1. Dimensional analysis; 2.1.2. Exact dispersion relation; 2.2. Froude Number; 2.3. Stratification and Buoyancy Frequency; 2.4. Internal Gravity Waves; 2.5. Mountain Waves; 2.6. Mass, Momentum and Energy Fluxes; 3. Convection; 3.1. Unstable Stratification; 3.2. Parcel Argument; 3.3. Dimensional Analysis; 3.3.1. Rayleigh number; 3.4. Convection Strength; 3.5. High Rayleigh Number; 3.6. Very High Rayleigh Number; 4. Plumes; 4.1. Plumes-Dimensional Analysis; 4.2. Entrainment; 4.2.1. Entrainment assumption; 4.3. Self-similarity; 4.4. Plume Rise in a Stratified Fluid. 4.4.1. Dimensional analysis4.4.2. Impact on the external environment -- the "filling box"; 4.5. Fires; 5. Gravity Currents; 5.1. Horizontal Stratification; 5.2. Gravity Currents; 5.2.1. Dimensional analysis; 5.2.1.1. Constant velocity phase; 5.2.1.2. Similarity phase; 5.2.2. Laboratory verification; 5.3. The Front Froude Number; 6. Rotating Flows; 6.1. Rotating Frame and the Coriolis Force; 6.2. Inertial Oscillations; 6.3. Rossby Radius of Deformation and Eddies; 6.4. Buoyancy-Driven Coastal Currents; References; 3. Weather and Climate Emily Shuckburgh; 1. Introduction. 2. Forcing of the Atmosphere and Ocean Circulation2.1. Atmospheric Properties; 2.2. Solar Forcing; 2.3. Greenhouse Effect; 2.4. Radiative Transfer; 2.5. Climate Change; 2.6. Further Atmospheric Properties; 2.7. Oceanic Properties; 2.8. Ocean Forcing; 3. Dynamics of the Atmosphere and Oceans; 3.1. Role of Dynamics; 3.2. Rotating Fluids; 3.3. Weather and Climate Models; 3.4. Dynamical Processes; 3.5. General Circulation of the Atmosphere; 3.6. Ocean Circulation; 3.7. Tropical Ocean-Atmosphere Coupling; 4. Conclusions; References. 4. Dynamics of the Indian and Pacific Oceans Swadhin Behera and Toshio Yamagata1. Introduction; 2. The Tropical Climate Modes; 2.1. The ENSO; 2.2. The ENSO Modoki; 2.2.1. Ocean-atmosphere coupling; 2.2.2. ENSO Modoki vs ENSO impacts; 2.3. The Indian Ocean Dipole; 2.3.1. Ocean-atmosphere coupling; 2.3.2. Triggering and termination processes; 2.3.3. IOD impacts; 2.3.4. IOD predictions; 3. IOD, ENSO and ENSO Modoki Interactions; 4. Discussions; References; 5. The Hurricane-Climate Connection Kerry Emanuel; 1. Introduction; 2. Tropical Cyclone Variability in the Instrumental Record. English. Climatic extremes Congresses. Atmospheric turbulence Congresses. Natural disasters Congresses. Fluid mechanics Congresses. Extrêmes (Météorologie) Congrès. Turbulence atmosphérique Congrès. Catastrophes naturelles Congrès. Mécanique des fluides Congrès. SCIENCE Earth Sciences Meteorology & Climatology. bisacsh Atmospheric turbulence fast Climatic extremes fast Fluid mechanics fast Natural disasters fast Conference papers and proceedings fast Moffatt, H. K. (Henry Keith), 1935- http://id.loc.gov/authorities/names/n85008218 Shuckburgh, Emily. National University of Singapore. Institute for Mathematical Sciences. http://id.loc.gov/authorities/names/no2003042730 has work: Environmental hazards (Text) https://id.oclc.org/worldcat/entity/E39PCGpFvKVKCYXX7mQkFygBT3 https://id.oclc.org/worldcat/ontology/hasWork Print version: Spring School on Fluid Dynamics and Geophysics of Environmental Hazards (2009 : National University of Singapore). Environmental hazards. Singapore : World Scientific, ©2011 9789814313285 (DLC) 2011293864 (OCoLC)587219946 Lecture notes series (National University of Singapore. Institute for Mathematical Sciences) ; v. 21. http://id.loc.gov/authorities/names/no2003042729 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=426386 Volltext CBO01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=426386 Volltext |
spellingShingle | Environmental hazards : the fluid dynamics and geophysics of extreme events / Lecture notes series (National University of Singapore. Institute for Mathematical Sciences) ; Foreword; Preface; 1. A Brief Introduction to Vortex Dynamics and Turbulence H. Keith Moffatt; 1. Introduction; 2. Vorticity and the Biot-Savart Law; 3. The Euler Equation and its Invariants; 4. The Stretched Vortex of Burgers (1948); 5. Kelvin-Helmholtz Instability; 6. Transient Instability and Streamwise Vortices; 7. Turbulence, Viewed as a Random Field of Vorticity; 8. The Kolmogorov-Obukhov Energy-Cascade Theory; Acknowledgments; References; 2. Geophysical and Environmental Fluid Dynamics Tieh-Yong Koh and Paul F. Linden; 1. Introduction; 2. Stratified Flows. 2.1. Surface Gravity Waves2.1.1. Dimensional analysis; 2.1.2. Exact dispersion relation; 2.2. Froude Number; 2.3. Stratification and Buoyancy Frequency; 2.4. Internal Gravity Waves; 2.5. Mountain Waves; 2.6. Mass, Momentum and Energy Fluxes; 3. Convection; 3.1. Unstable Stratification; 3.2. Parcel Argument; 3.3. Dimensional Analysis; 3.3.1. Rayleigh number; 3.4. Convection Strength; 3.5. High Rayleigh Number; 3.6. Very High Rayleigh Number; 4. Plumes; 4.1. Plumes-Dimensional Analysis; 4.2. Entrainment; 4.2.1. Entrainment assumption; 4.3. Self-similarity; 4.4. Plume Rise in a Stratified Fluid. 4.4.1. Dimensional analysis4.4.2. Impact on the external environment -- the "filling box"; 4.5. Fires; 5. Gravity Currents; 5.1. Horizontal Stratification; 5.2. Gravity Currents; 5.2.1. Dimensional analysis; 5.2.1.1. Constant velocity phase; 5.2.1.2. Similarity phase; 5.2.2. Laboratory verification; 5.3. The Front Froude Number; 6. Rotating Flows; 6.1. Rotating Frame and the Coriolis Force; 6.2. Inertial Oscillations; 6.3. Rossby Radius of Deformation and Eddies; 6.4. Buoyancy-Driven Coastal Currents; References; 3. Weather and Climate Emily Shuckburgh; 1. Introduction. 2. Forcing of the Atmosphere and Ocean Circulation2.1. Atmospheric Properties; 2.2. Solar Forcing; 2.3. Greenhouse Effect; 2.4. Radiative Transfer; 2.5. Climate Change; 2.6. Further Atmospheric Properties; 2.7. Oceanic Properties; 2.8. Ocean Forcing; 3. Dynamics of the Atmosphere and Oceans; 3.1. Role of Dynamics; 3.2. Rotating Fluids; 3.3. Weather and Climate Models; 3.4. Dynamical Processes; 3.5. General Circulation of the Atmosphere; 3.6. Ocean Circulation; 3.7. Tropical Ocean-Atmosphere Coupling; 4. Conclusions; References. 4. Dynamics of the Indian and Pacific Oceans Swadhin Behera and Toshio Yamagata1. Introduction; 2. The Tropical Climate Modes; 2.1. The ENSO; 2.2. The ENSO Modoki; 2.2.1. Ocean-atmosphere coupling; 2.2.2. ENSO Modoki vs ENSO impacts; 2.3. The Indian Ocean Dipole; 2.3.1. Ocean-atmosphere coupling; 2.3.2. Triggering and termination processes; 2.3.3. IOD impacts; 2.3.4. IOD predictions; 3. IOD, ENSO and ENSO Modoki Interactions; 4. Discussions; References; 5. The Hurricane-Climate Connection Kerry Emanuel; 1. Introduction; 2. Tropical Cyclone Variability in the Instrumental Record. Climatic extremes Congresses. Atmospheric turbulence Congresses. Natural disasters Congresses. Fluid mechanics Congresses. Extrêmes (Météorologie) Congrès. Turbulence atmosphérique Congrès. Catastrophes naturelles Congrès. Mécanique des fluides Congrès. SCIENCE Earth Sciences Meteorology & Climatology. bisacsh Atmospheric turbulence fast Climatic extremes fast Fluid mechanics fast Natural disasters fast |
title | Environmental hazards : the fluid dynamics and geophysics of extreme events / |
title_auth | Environmental hazards : the fluid dynamics and geophysics of extreme events / |
title_exact_search | Environmental hazards : the fluid dynamics and geophysics of extreme events / |
title_full | Environmental hazards : the fluid dynamics and geophysics of extreme events / editors, H.K. Moffatt, Emily Shuckburgh. |
title_fullStr | Environmental hazards : the fluid dynamics and geophysics of extreme events / editors, H.K. Moffatt, Emily Shuckburgh. |
title_full_unstemmed | Environmental hazards : the fluid dynamics and geophysics of extreme events / editors, H.K. Moffatt, Emily Shuckburgh. |
title_short | Environmental hazards : |
title_sort | environmental hazards the fluid dynamics and geophysics of extreme events |
title_sub | the fluid dynamics and geophysics of extreme events / |
topic | Climatic extremes Congresses. Atmospheric turbulence Congresses. Natural disasters Congresses. Fluid mechanics Congresses. Extrêmes (Météorologie) Congrès. Turbulence atmosphérique Congrès. Catastrophes naturelles Congrès. Mécanique des fluides Congrès. SCIENCE Earth Sciences Meteorology & Climatology. bisacsh Atmospheric turbulence fast Climatic extremes fast Fluid mechanics fast Natural disasters fast |
topic_facet | Climatic extremes Congresses. Atmospheric turbulence Congresses. Natural disasters Congresses. Fluid mechanics Congresses. Extrêmes (Météorologie) Congrès. Turbulence atmosphérique Congrès. Catastrophes naturelles Congrès. Mécanique des fluides Congrès. SCIENCE Earth Sciences Meteorology & Climatology. Atmospheric turbulence Climatic extremes Fluid mechanics Natural disasters Conference papers and proceedings |
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