Storm and cloud dynamics: the dynamics of clouds and precipiting mesoscale systems
Gespeichert in:
Hauptverfasser: | , , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier [u.a.]
2011
|
Ausgabe: | 2. ed. |
Schriftenreihe: | International geophysics series
99 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 809 S. Ill., graph. Darst., Kt. |
ISBN: | 9780120885428 0120885425 |
Internformat
MARC
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100 | 1 | |a Cotton, William R. |d 1940- |e Verfasser |0 (DE-588)135677963 |4 aut | |
245 | 1 | 0 | |a Storm and cloud dynamics |b the dynamics of clouds and precipiting mesoscale systems |c William R. Cotton ; George H. Bryan ; Susan C. van den Heever |
250 | |a 2. ed. | ||
264 | 1 | |a Amsterdam [u.a.] |b Elsevier [u.a.] |c 2011 | |
300 | |a XVI, 809 S. |b Ill., graph. Darst., Kt. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a International geophysics series |v 99 | |
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700 | 1 | |a Van den Heever, Susan C. |e Verfasser |4 aut | |
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Datensatz im Suchindex
_version_ | 1817514913948499968 |
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adam_text |
Contents
Preface
xiii
1.
Clouds
1.1.
Introduction
1
1.2.
The classification of clouds
2
1.3.
Cloud time scales, vertical velocities, and liquid-water
contents
5
1.3.1.
Fog
7
1.3.2.
Stratus and
Stratocumulus
Clouds
7
1.3.3.
Cumulus (Humilis and Mediocris) Clouds
8
1.3.4.
Cumulus Congestus Clouds
8
1.3.5.
Cumulonimbus Clouds
9
1.3.6.
Stable
Orographie
Clouds
9
References
11
Parti
Fundamental Concepts and Parameterizations
2.
Fundamental Equations Governing Cloud Processes
2.1.
Introduction
15
2.2.
State Properties
16
2.2.1.
State Properties: Gas
16
2.2.2.
State Properties: Liquid and Ice
16
2.2.3.
Other Useful Properties of State
17
2.3.
Velocity
18
2.4.
Conservation of mass
20
2.5.
Conservation of momentum
21
2.6.
Conservation of internal energy
24
2.7.
Equation for pressure
28
2.8.
Equation for potential temperature
28
2.9.
Approximate equations
29
2.9.1.
Approximate Equations for
θ
and
ρ
29
2.9.2.
Anelastic Equations
31
2.9.3.
Incompressible Equations
32
2.9.4.
Pseudo-incompressible Equations
33
2.10.
Derived thermodynamic variables
33
2.10.1.
Reversible Thermodynamics
33
2.10.2.
Pseudoadiabatic Thermodynamics
36
Contents
2.10.3.
Other Derived
Variables
38
2.11.
Buoyancy
38
2.12.
Lapse rates and stability
42
2.13.
CAPE
45
2.14.
Summary
50
References
50
Turbulence
3.1.
Introduction
53
3.2.
Reynolds Averaging
56
3.2.1.
First-Order Closure
58
3.2.2. 1
.5-order Closure
60
3.2.3.
Higher Order Closure
62
3.3.
Large eddy simulation
67
3.4.
Subgrid condensation and evaporation
74
3.5.
Implications of Filtering to the Interpretation of Model-
Predicted Data
82
References
84
4.
The Parameterization or Modeling of Microphysical
Processes in Clouds
4.1.
Introduction
87
4.2.
General Theory of the Microphysics of Clouds
87
4.2.1.
Turbulence Influences on Condensation Growth
89
4.2.2.
Role of Giant Cloud Condensation Nuclei (GCCN)
90
4.2.3.
Turbulence Influence on Droplet Collision and
Coalescence
90
4.2.4.
Radiative Cooling of Droplets to Form Precipitation
Embryos
91
4.3.
Approaches to Modeling Cloud Microphysics in Cloud Models
92
4.3.1.
Bin-resolving Microphysics
92
4.3.2.
Bulk Warm-cloud Physics
95
4.3.3.
Conversion Parameterizations
97
4.3.4.
Parameterization of Accretion
97
4.4.
Fundamental Principles of Ice-Phase Microphysics
101
4.4.1.
Nucleation of Ice Crystals
101
4.4.2.
Ice Multiplication
106
4.4.3.
Ice-Particle Growth by Vapor Deposition
108
4.4.4.
Riming Growth of Ice Particles
112
4.4.5.
Aggregation Growth of Ice Particles
115
4.4.6.
Melting of Ice Particles
117
4.5.
Summary of Cloud Microphysical Processes
117
4.6.
Modeling and Parameterization of Ice-Phase Microphysics
119
4.7.
Impact of Cloud Microphysical Processes on Cloud Dynamics
123
4.7.1.
Water Loading
124
Contents
v
vii
4.7.2.
Redistribution
of Condensed Water into Subsaturated
Regions
124
4.7.3.
Cloud
Supersaturation
and Cloud Droplet Evaporation
124
4.7.4.
Latent Heat Released during Freezing and Sublimation
125
4.7.5.
Cooling by Melting
126
4.7.6.
Radiative Heating/Cooling
127
4.7.7.
Electrical Effects
127
References
127
5.
Radiative Transfer in a Cloudy Atmosphere and Its
Parameterization
5.1.
Introduction
143
5.2.
Absorptance, Reflectance, Transmittance, and Emittance in the
Clear Atmosphere
145
5.3.
Shortwave Radiative Transfer in a Cloudy Atmosphere
147
5.3.1.
Absorption by Clouds
152
5.3.2.
Ice Clouds
152
5.4.
Longwave Radiative Transfer in a Cloudy Atmosphere
153
5.5.
Radiative Characteristics of Clouds of Horizontally Finite
Extent
155
5.6.
Radiative Influences on Cloud Particle Growth
156
5.7.
Aerosol Effects on the Radiative Properties of Clouds
159
5.8.
Parameterization of Radiative Transfer in Clouds
162
5.8.1.
Introduction
162
5.8.2.
Parameterization of Shortwave and Longwave Radia¬
tion in Clouds
163
5.8.3.
Parameterization of Longwave Radiative Transfer in
Clouds
169
5.9.
Summary
170
References
170
Part II
The Dynamics of Clouds
6.
Fogs and
Stratocumulus
Clouds
6.1.
Introduction
179
6.2.
Types of Fog and Formation Mechanisms
179
6.3.
Radiation Fog Physics and Dynamics
181
6.3.1.
The Role of Radiative Cooling
181
6.3.2.
The Role of Dew
182
6.3.3.
The Role of Turbulence
183
6.3.4.
The Role of Drop Settling
184
6.3.5.
The Role of Vegetative Cover
186
6.3.6.
Advection of Cloud Cover
186
6.3.7.
Variability in Nocturnal Fogs
187
6.3.8.
Dispersal
oí
Fog by Solar Insolation
188
iii J
Contents
6.4.
Valley Fog
189
6.5.
Marine Fog
191
6.5.1.
Fog Formation in a Turbulence-Dominated Marine
Boundary Layer
191
6.5.2.
The Advection-Radiative Fog
194
6.5.3.
Marine Fog Formation by a Stratus-Lowering Process
196
6.5.4.
Fog Streets and Low-level Convergence
199
6.5.5.
Numerical Prediction of Fogs
201
6.6.
Stratocumulus
Clouds
203
6.6.1.
The Stratus-topped Boundary Layer
203
6.6.2.
Layer-averaged Models
205
6.6.3.
Entity-type Models
207
6.6.4.
Higher Order Closure Models
209
6.6.5.
Large-eddy Simulation Models
210
6.6.6.
The Evolving Conceptual Model of the Stratus-topped
Boundary Layer
211
6.6.7.
Cloud Top Entrainment Instability
214
6.6.8.
Transition from Solid Stratus to Trade-wind Cumulus
217
6.6.9.
The Role of Vertical Shear of the Horizontal Wind
219
6.6.10.
The Role of Drizzle
222
6.6.11.
Role of Large-scale Subsidence
226
6.6.12.
Diurnal Variations in Marine
Stratocumuli
227
6.6.13.
Influence of Mid- and High-level Clouds
229
6.7.
Arctic Stratus Clouds
230
References
233
7.
Cumulus Clouds
7.1.
Introduction
243
7.2.
Boundary Layer Cumuli—An Ensemble View
244
7.2.1.
Towering Cumuli in the Tradewind Environment
259
7.2.2.
Role of Radiation
260
7.2.3.
Cloud Coverage
263
7.2.4.
Organization of Cumuli
264
7.2.5.
Cellular Convection
267
7.2.6.
Roll Convection
268
7.2.7.
The Role of Gravity Waves in Cloud Organization
272
7.2.8.
The Observed Structure of Individual Cumuli
273
7.3.
Theories of Entrainment, Detrainment, and Downdraft
Initiation in Cumuli
283
7.4.
The Role of Precipitation
290
7.4.1.
The Role of the Ice Phase
291
7.5.
Cloud Merger and Larger Scale Convergence
296
References
302
Contents (^
¡χ
8.
Cumulonimbus Clouds and Severe Convective Storms
8.1.
Introduction
315
8.2.
Descriptive Storm Models and Storm Types
315
8.3.
Updrafts and Turbulence in Cumulonimbi
324
8.4.
Updraft Magnitudes and Profiles
325
8.5.
Turbulence
331
8.6.
Downdrafts: Origin and Intensity
334
8.7.
Low-Level Outflows and Gust Fronts
345
8.8.
Theories of Storm Movement and Propagation
351
8.8.1.
Autopropagation
by Gust Fronts and Cold-Pools
354
8.8.2.
Autopropagation
by Gravity Waves
355
8.8.3.
Updraft Splitting and Storm Propagation
358
8.9.
Mesocyclones and Tornados
363
8.9.1.
Vorticity and Circulation Equations
363
8.9.2.
Large-Scale Conditions Associated with Tornadoes
368
8.9.3.
Rotating Thunderstorms or Mesocyclones
370
8.9.4.
The Genesis of Low-level Rotation and Tornadoes
373
8.9.5.
Tornado Features
386
8.9.6.
Secondary Vortices
389
8.10.
Hailstorms
391
8.10.1.
Synoptic and Mesoscale Conditions Suitable for the
Formation of Hailstones
392
8.11.
Models of Hailstorms and Hail Formation Processes
395
8.11.1.
The Soviet Hail Model
396
8.11.2.
The role of aerosols in hail formation
408
8.12.
Rainfall from Cumulonimbus Clouds
409
8.13.
Aerosol Impacts on Convective Precipitation
414
8.14.
Thunderstorm Electrification and Storm Dynamics
417
8.14.1.
Influence of Storm Electrification on Cloud Dynamics
417
8.14.2.
Influence of Cloud Dynamics on Cloud-Charging
Processes
419
References
428
9.
Mesoscale Convective Systems
9.1.
Introduction
455
9.2.
Definition of Mesoscale Convective Systems
455
9.3.
Conceptual Models of MCSs
456
9.3.1.
Tropical Squall Lines
456
9.3.2.
Conceptual Model of Tropical Non-squall Clusters
458
9.3.3.
Conceptual Models of Mid-Latitude Squall Lines
460
9.3.4.
Conceptual Models of Mid-Latitude Non-squall Line
MCSs and MCCs
467
9.4.
Climatology of MCSs
472
9.4.1.
Climatology of Squall Lines
472
9.4.2.
Climatology of Non-Squall Line MCSs and MCCs
473
9.4.3.
Dynamical Aspects of MCSs
486
x J
Contents
9.5.
MCVs and Tropical Cyclone Genesis
506
9.5.1.
Тор
-Down
vs. Bottom-Up Theories for TC Genesis
512
9.6.
Impacts of MCSs
513
References
515
10.
The Mesoscale Structure of
Extratropical
Cyclones
and Middle and High Clouds
10.1.
Introduction
527
10.2.
Large-Scale Processes that Determine Mesoscale Features
528
10.2.1.
Water Vapor Content
528
10.2.2.
Temperature
529
10.2.3.
Aerosol Types and Amounts
529
10.2.4.
Static Stability
530
10.2.5.
Vertical Motion
532
10.2.6.
Vertical Shear of the Horizontal Wind
534
10.2.7.
Ocean versus Land
Extratropical
Cyclones
536
10.3.
Mesoscale Structure of
Extratropical
Cyclones
536
10.3.1.
Introduction
536
10.3.2.
Conceptual Models of
Extratropical
Cyclones
538
10.3.3.
Conveyor Belt Concepts
543
10.3.4.
Frontal Occlusion and the Trowal Airstream
547
10.3.5.
Cloud and Precipitation Characteristics
549
10.3.6.
Polar Lows
588
10.3.7.
Lake-Effect Storms
598
10.4.
Middle-and High-Level Clouds
608
10.4.1.
Introduction
608
10.4.2.
Characteristics and Formation of Middle- and High-
Level Clouds
611
10.4.3.
Environmental Properties of Middle- and High-
Level Clouds
621
10.4.4.
Microphysical Propertiesof Middle-and High-Level
Clouds
624
10.4.5.
Radiative Properties of Middle- and High-Levels
Clouds
635
10.4.6.
Aerosol Effects on Middle- and High-Level Clouds
638
References
641
11.
The Influence of Mountains on Airflow, Clouds, and
Precipitation
11.1.
Introduction
673
11.2.
Theory of Flow over Hills and Mountains
673
11.2.1.
Queney Models
677
11.2.2.
Linear Theory of Trapped Lee Waves
681
11.2.3.
Large-Amplitude Theories
684
Contents
11.3.
Effects of Clouds on
Orographie
Flow
694
11.4.
Orogenic Precipitation
704
11.4.1.
Seeder-Feeder Process and Distribution of
Precipitation
705
11.5.
Turbulence eddies and embedded convection in
orographie
clouds
710
11.6.
Blocking impacts on
orographie
precipitation
711
11.7.
Orographie
Modification of
Extratropical
Cyclones and
Precipitation
712
11.7.1.
Differential Thermal Advection Caused by
Oro¬
graphie
Blocking
713
11.7.2.
Lee Upslope Storms
716
11.8.
Distribution of Supercooled Liquid-Water in
Orographie
Clouds
722
11.8.1.
Stable
Orographie
Clouds
724
11.8.2.
Supercooled Liquid-Water in Orographically Modi¬
fied Cyclonic Storms
725
11.8.3.
Observations of Supercooled Liquid-Water over the
Sierra Nevada
730
11.9.
Efficiency of
Orographie
Precipitation and Diurnal Variability
731
11.9.1.
Precipitation Efficiency of
Orographie
Clouds
731
11.9.2.
Diurnal Variations in Wintertime
Orographie
Precipitation
734
11.10.
Aerosol influences on
orographie
precipitation
738
References
740
Partili
Clouds, Storms and Global Climate
12.
Clouds, Storms, and Global Climate
12.1.
Introduction
753
12.2.
Clouds and the Global Radiation Budget
753
12.3.
Hot Towers and Tropical Circulations
754
12.4.
Clouds and the Global Hydrological Cycle
756
12.5.
Cloud Venting
758
12.6.
Aerosol Pollution Impacts on Global Climate
759
12.7.
Representing Clouds in General Circulation Models
760
12.7.1.
Introduction
760
12.7.2.
Representing Boundary Layer Clouds
761
12.7.3.
Representing Middle and High Clouds
762
12.7.4.
Representing deep convective clouds
762
References
764
Volumes in Series
769
Index
775 |
any_adam_object | 1 |
author | Cotton, William R. 1940- Bryan, George H. Van den Heever, Susan C. |
author_GND | (DE-588)135677963 |
author_facet | Cotton, William R. 1940- Bryan, George H. Van den Heever, Susan C. |
author_role | aut aut aut |
author_sort | Cotton, William R. 1940- |
author_variant | w r c wr wrc g h b gh ghb d h s c v dhsc dhscv |
building | Verbundindex |
bvnumber | BV039727773 |
classification_rvk | RB 10429 |
ctrlnum | (OCoLC)767796445 (DE-599)HBZHT016387261 |
discipline | Geographie |
edition | 2. ed. |
format | Book |
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id | DE-604.BV039727773 |
illustrated | Illustrated |
indexdate | 2024-12-04T13:01:32Z |
institution | BVB |
isbn | 9780120885428 0120885425 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024575741 |
oclc_num | 767796445 |
open_access_boolean | |
owner | DE-703 DE-12 |
owner_facet | DE-703 DE-12 |
physical | XVI, 809 S. Ill., graph. Darst., Kt. |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Elsevier [u.a.] |
record_format | marc |
series | International geophysics series |
series2 | International geophysics series |
spelling | Cotton, William R. 1940- Verfasser (DE-588)135677963 aut Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems William R. Cotton ; George H. Bryan ; Susan C. van den Heever 2. ed. Amsterdam [u.a.] Elsevier [u.a.] 2011 XVI, 809 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier International geophysics series 99 Mesometeorologie (DE-588)4211580-2 gnd rswk-swf Wolkenbildung (DE-588)4190245-2 gnd rswk-swf Niederschlag (DE-588)4132260-5 gnd rswk-swf Sturm (DE-588)4058271-1 gnd rswk-swf Dynamik (DE-588)4013384-9 gnd rswk-swf Dynamische Meteorologie (DE-588)4150921-3 gnd rswk-swf Geophysik (DE-588)4020252-5 gnd rswk-swf Wolke (DE-588)4125270-6 gnd rswk-swf Sturm (DE-588)4058271-1 s Dynamik (DE-588)4013384-9 s DE-604 Geophysik (DE-588)4020252-5 s Wolke (DE-588)4125270-6 s Niederschlag (DE-588)4132260-5 s Mesometeorologie (DE-588)4211580-2 s Dynamische Meteorologie (DE-588)4150921-3 s 1\p DE-604 Wolkenbildung (DE-588)4190245-2 s 2\p DE-604 Bryan, George H. Verfasser aut Van den Heever, Susan C. Verfasser aut International geophysics series 99 (DE-604)BV000005107 99 Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024575741&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Cotton, William R. 1940- Bryan, George H. Van den Heever, Susan C. Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems International geophysics series Mesometeorologie (DE-588)4211580-2 gnd Wolkenbildung (DE-588)4190245-2 gnd Niederschlag (DE-588)4132260-5 gnd Sturm (DE-588)4058271-1 gnd Dynamik (DE-588)4013384-9 gnd Dynamische Meteorologie (DE-588)4150921-3 gnd Geophysik (DE-588)4020252-5 gnd Wolke (DE-588)4125270-6 gnd |
subject_GND | (DE-588)4211580-2 (DE-588)4190245-2 (DE-588)4132260-5 (DE-588)4058271-1 (DE-588)4013384-9 (DE-588)4150921-3 (DE-588)4020252-5 (DE-588)4125270-6 |
title | Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems |
title_auth | Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems |
title_exact_search | Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems |
title_full | Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems William R. Cotton ; George H. Bryan ; Susan C. van den Heever |
title_fullStr | Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems William R. Cotton ; George H. Bryan ; Susan C. van den Heever |
title_full_unstemmed | Storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems William R. Cotton ; George H. Bryan ; Susan C. van den Heever |
title_short | Storm and cloud dynamics |
title_sort | storm and cloud dynamics the dynamics of clouds and precipiting mesoscale systems |
title_sub | the dynamics of clouds and precipiting mesoscale systems |
topic | Mesometeorologie (DE-588)4211580-2 gnd Wolkenbildung (DE-588)4190245-2 gnd Niederschlag (DE-588)4132260-5 gnd Sturm (DE-588)4058271-1 gnd Dynamik (DE-588)4013384-9 gnd Dynamische Meteorologie (DE-588)4150921-3 gnd Geophysik (DE-588)4020252-5 gnd Wolke (DE-588)4125270-6 gnd |
topic_facet | Mesometeorologie Wolkenbildung Niederschlag Sturm Dynamik Dynamische Meteorologie Geophysik Wolke |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024575741&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000005107 |
work_keys_str_mv | AT cottonwilliamr stormandclouddynamicsthedynamicsofcloudsandprecipitingmesoscalesystems AT bryangeorgeh stormandclouddynamicsthedynamicsofcloudsandprecipitingmesoscalesystems AT vandenheeversusanc stormandclouddynamicsthedynamicsofcloudsandprecipitingmesoscalesystems |