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Motions of ice hydrometeors in the a...
~
Wang, Pao K.
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Motions of ice hydrometeors in the atmosphere = numerical studies and implications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Motions of ice hydrometeors in the atmosphere/ by Pao K. Wang.
Reminder of title:
numerical studies and implications /
Author:
Wang, Pao K.
Published:
Singapore :Springer Singapore : : 2021.,
Description:
viii, 176 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Ice Hydrometeors in Atmospheric Clouds -- Observed fall attitudes of ice hydrometeors -- Physics and mathematics of the theoretical problems -- Flow fields and fall attitudes of ice hydrometeors -- Ventilation effects of falling ice hydrometeors and their impacts -- Summary and outlook.
Contained By:
Springer Nature eBook
Subject:
Ice-atmosphere interaction. -
Online resource:
https://doi.org/10.1007/978-981-33-4431-0
ISBN:
9789813344310
Motions of ice hydrometeors in the atmosphere = numerical studies and implications /
Wang, Pao K.
Motions of ice hydrometeors in the atmosphere
numerical studies and implications /[electronic resource] :by Pao K. Wang. - Singapore :Springer Singapore :2021. - viii, 176 p. :ill., digital ;24 cm. - Atmosphere, earth, ocean & space,2524-440X. - Atmosphere, earth, ocean & space..
Introduction -- Ice Hydrometeors in Atmospheric Clouds -- Observed fall attitudes of ice hydrometeors -- Physics and mathematics of the theoretical problems -- Flow fields and fall attitudes of ice hydrometeors -- Ventilation effects of falling ice hydrometeors and their impacts -- Summary and outlook.
This book summarizes unique research findings on the hydrodynamic behavior of ice particles (ice crystals, snow, graupel and hailstones) in the atmosphere. The fall behavior of ice hydrometeors determines how and how fast a mixed-phase cloud can grow or dissipate. The book discusses how the authors used computational fluid dynamics (CFD) methods and numerical simulations to determine these behaviors, and presents these computations along with numerous detailed tables and illustrations of turbulent flow fields. It also examines the implications of the results for the general atmospheric sciences as well as for climate science (since the cloud problem is the source of the greatest uncertainty in model-based climate predictions) As such it allows readers to gain a clear and comprehensive understanding of how particles fall in clouds and offers insights into cloud physics and dynamics and their impact on the climate.
ISBN: 9789813344310
Standard No.: 10.1007/978-981-33-4431-0doiSubjects--Topical Terms:
3487542
Ice-atmosphere interaction.
LC Class. No.: QC926.32 / .W35 2021
Dewey Class. No.: 551.556
Motions of ice hydrometeors in the atmosphere = numerical studies and implications /
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Introduction -- Ice Hydrometeors in Atmospheric Clouds -- Observed fall attitudes of ice hydrometeors -- Physics and mathematics of the theoretical problems -- Flow fields and fall attitudes of ice hydrometeors -- Ventilation effects of falling ice hydrometeors and their impacts -- Summary and outlook.
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This book summarizes unique research findings on the hydrodynamic behavior of ice particles (ice crystals, snow, graupel and hailstones) in the atmosphere. The fall behavior of ice hydrometeors determines how and how fast a mixed-phase cloud can grow or dissipate. The book discusses how the authors used computational fluid dynamics (CFD) methods and numerical simulations to determine these behaviors, and presents these computations along with numerous detailed tables and illustrations of turbulent flow fields. It also examines the implications of the results for the general atmospheric sciences as well as for climate science (since the cloud problem is the source of the greatest uncertainty in model-based climate predictions) As such it allows readers to gain a clear and comprehensive understanding of how particles fall in clouds and offers insights into cloud physics and dynamics and their impact on the climate.
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Earth and Environmental Science (SpringerNature-11646)
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W9398180
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EB QC926.32 .W35 2021
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