Recent Progress in Atmospheric and Climate Science

Recent Progress in Atmospheric and Climate Science
Author: Clara Farrow
Publsiher: Unknown
Total Pages: 234
Release: 2019-06-25
Genre: Electronic Book
ISBN: 1641161949

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Atmospheric sciences refer to the study of the Earth's atmosphere and its various processes, as well as the factors affecting it. It integrates varied fields like aeronomy, climatology and meteorology. Climatology or climate science deals with the study of climate. Modern climatology encompasses the areas of oceanography and biogeochemistry. Climatic studies using analog techniques are fundamental to the understanding of short-term weather forecasting. Some of these techniques are the Pacific decadal oscillation (PDO), El Niño-Southern Oscillation (ENSO), the Interdecadal Pacific Oscillation (IPO), the Madden-Julian Oscillation (MJO), etc. Climate models are crucial for the study of weather and climate systems as well as for the projection of future climates. This book aims to shed light on some of the unexplored aspects of atmospheric and climate sciences and the recent researches in these fields. The various sub-fields along with technological progress that have future implications are glanced at. Researchers and students involved in these fields will be assisted by this book.

Recent Progress In Atmospheric Sciences Applications To The Asia pacific Region

Recent Progress In Atmospheric Sciences  Applications To The Asia pacific Region
Author: Kuo Nan Liou,Ming-dah Chou
Publsiher: World Scientific
Total Pages: 496
Release: 2008-12-22
Genre: Science
ISBN: 9789814470728

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This book contains 22 peer-reviewed articles that cover a spectrum of contemporary subjects relevant to atmospheric sciences, with specific applications to the Asia-Pacific region. The majority of these papers consist of a review of a scientific sub-field in atmospheric sciences, while some contain original contributions. All of the accepted papers were subject to scientific reviews and revisions.The book is divided into 2 traditional fields in atmospheric sciences: atmospheric dynamics and meteorology; and atmospheric physics and chemistry. The authors of these papers are distinguished alumni of the Department of Atmospheric Sciences at the National Taiwan University, residing in the USA and Taiwan. This book is dedicated to the 50th anniversary of the Department of Atmospheric Sciences that occurred in 2004.Papers in atmospheric dynamics and meteorology cover the following subjects: El Niño/Southern Oscillation, air/sea interactions, convection in the tropics, meiyu frontal systems, tropical cyclones/typhoons, data assimilations, and mesoscale modeling. In atmospheric physics and chemistry, subjects range from aerosols/clouds interactions, heat budgets in the context of air/sea interactions, atmospheric radiative transfer, remote sensing of the oceans, Asian dust outbreaks and clouds, reviews of cloud microphysics and urban ozone formations, to a satellite GPS system for typhoon studies and weather predictions.

Recent Progress in Atmospheric Sciences

Recent Progress in Atmospheric Sciences
Author: K. N. Liou,M. D. Chou
Publsiher: World Scientific
Total Pages: 497
Release: 2008
Genre: Science
ISBN: 9789812818911

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This book contains 22 peer-reviewed articles that cover a spectrum of contemporary subjects relevant to atmospheric sciences, with specific applications to the Asia-Pacific region. The majority of these papers consist of a review of a scientific sub-field in atmospheric sciences, while some contain original contributions. All of the accepted papers were subject to scientific reviews and revisions.

Cultures of Prediction in Atmospheric and Climate Science

Cultures of Prediction in Atmospheric and Climate Science
Author: Matthias Heymann,Gabriele Gramelsberger,Martin Mahony
Publsiher: Taylor & Francis
Total Pages: 256
Release: 2017-06-26
Genre: Computers
ISBN: 9781315406299

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In recent decades, science has experienced a revolutionary shift. The development and extensive application of computer modelling and simulation has transformed the knowledge‐making practices of scientific fields as diverse as astro‐physics, genetics, robotics and demography. This epistemic transformation has brought with it a simultaneous heightening of political relevance and a renewal of international policy agendas, raising crucial questions about the nature and application of simulation knowledges throughout public policy. Through a diverse range of case studies, spanning over a century of theoretical and practical developments in the atmospheric and environmental sciences, this book argues that computer modelling and simulation have substantially changed scientific and cultural practices and shaped the emergence of novel ‘cultures of prediction’. Making an innovative, interdisciplinary contribution to understanding the impact of computer modelling on research practice, institutional configurations and broader cultures, this volume will be essential reading for anyone interested in the past, present and future of climate change and the environmental sciences.

Mountain Weather Research and Forecasting

Mountain Weather Research and Forecasting
Author: Fotini K. Chow,Stephan F.J. De Wekker,Bradley J. Snyder
Publsiher: Springer Science & Business Media
Total Pages: 760
Release: 2012-08-30
Genre: Science
ISBN: 9789400740983

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This book provides readers with a broad understanding of the fundamental principles driving atmospheric flow over complex terrain and provides historical context for recent developments and future direction for researchers and forecasters. The topics in this book are expanded from those presented at the Mountain Weather Workshop, which took place in Whistler, British Columbia, Canada, August 5-8, 2008. The inspiration for the workshop came from the American Meteorological Society (AMS) Mountain Meteorology Committee and was designed to bridge the gap between the research and forecasting communities by providing a forum for extended discussion and joint education. For academic researchers, this book provides some insight into issues important to the forecasting community. For the forecasting community, this book provides training on fundamentals of atmospheric processes over mountainous regions, which are notoriously difficult to predict. The book also helps to provide a better understanding of current research and forecast challenges, including the latest contributions and advancements to the field. The book begins with an overview of mountain weather and forecasting chal- lenges specific to complex terrain, followed by chapters that focus on diurnal mountain/valley flows that develop under calm conditions and dynamically-driven winds under strong forcing. The focus then shifts to other phenomena specific to mountain regions: Alpine foehn, boundary layer and air quality issues, orographic precipitation processes, and microphysics parameterizations. Having covered the major physical processes, the book shifts to observation and modelling techniques used in mountain regions, including model configuration and parameterizations such as turbulence, and model applications in operational forecasting. The book concludes with a discussion of the current state of research and forecasting in complex terrain, including a vision of how to bridge the gap in the future.

Cultures of Prediction in Atmospheric and Climate Science

Cultures of Prediction in Atmospheric and Climate Science
Author: Matthias Heymann,Gabriele Gramelsberger,Martin Mahony
Publsiher: Routledge
Total Pages: 256
Release: 2017-06-26
Genre: Computers
ISBN: 9781315406305

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In recent decades, science has experienced a revolutionary shift. The development and extensive application of computer modelling and simulation has transformed the knowledge‐making practices of scientific fields as diverse as astro‐physics, genetics, robotics and demography. This epistemic transformation has brought with it a simultaneous heightening of political relevance and a renewal of international policy agendas, raising crucial questions about the nature and application of simulation knowledges throughout public policy. Through a diverse range of case studies, spanning over a century of theoretical and practical developments in the atmospheric and environmental sciences, this book argues that computer modelling and simulation have substantially changed scientific and cultural practices and shaped the emergence of novel ‘cultures of prediction’. Making an innovative, interdisciplinary contribution to understanding the impact of computer modelling on research practice, institutional configurations and broader cultures, this volume will be essential reading for anyone interested in the past, present and future of climate change and the environmental sciences.

The Development of Atmospheric General Circulation Models

The Development of Atmospheric General Circulation Models
Author: Leo Donner,Wayne Schubert,Richard Somerville
Publsiher: Cambridge University Press
Total Pages: 289
Release: 2011
Genre: Mathematics
ISBN: 9780521190060

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Presents unique perspectives from leading researchers on the development and application of atmospheric general circulation models. It is a core reference for academic researchers and professionals involved in atmospheric physics, meteorology and climate science, and a resource for graduate-level courses in climate modeling and numerical weather prediction.

Improving the Scientific Foundation for Atmosphere Land Ocean Simulations

Improving the Scientific Foundation for Atmosphere Land Ocean Simulations
Author: National Research Council,Division on Earth and Life Studies,Board on Atmospheric Sciences and Climate,Committee on Challenges in Representing Physical Processes in Coupled Atmosphere-Land-Ocean Models
Publsiher: National Academies Press
Total Pages: 84
Release: 2005-05-12
Genre: Science
ISBN: 9780309096096

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The National Academies' Board on Atmospheric Sciences and Climate (BASC) held a workshop to explore and evaluate current efforts to model physical processes of coupled atmosphere-land-ocean (A-L-O) models. Numerical models of the atmosphere and ocean are central to weather prediction, research, and education. Although great strides have been made over the past few decades in understanding the atmosphere and ocean, modeling capabilities, and numerical A-L-O simulations, some unresolved processes in the models do not adequately represent knowledge of the underlying physics. Moreover, there is evidence that further progress in numerical simulations is being impeded by the slow pace of improvement in the representation of key physical processes in the models and the fact that geophysical flow models are not receiving the attention needed to make these tools more useful and accurate. These models often are used to predict future events, so it is imperative that their underlying physical processes be represented as robustly as possible. During the workshop, the parameterization of physical processes in A-L-O models was addressed, including associated errors, testing, and efforts to improve the use of parameterizations. Participants also examined intellectual and scientific challenges in modeling and highlighted the idea that some of the key impediments to progress in representing physical processes are primarily cultural in nature.