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Showing posts with label bsc. Show all posts

Boundary Layer Climates Review

Boundary Layer Climates
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Boundary Layer Climates ReviewI have found this book to be an extremely good reference over the years for a non-meteorologist; this coming from a biogeochemist - I have used it for years and am now buying it. Another very good reference is Stahl (of course)Boundary Layer Climates OverviewThis modern climatology textbook explains those climates formed near the ground in terms of the cycling of energy and mass through systems.

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Radiative Transfer in the Atmosphere and Ocean (Cambridge Atmospheric and Space Science Series) Review

Radiative Transfer in the Atmosphere and Ocean (Cambridge Atmospheric and Space Science Series)
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Radiative Transfer in the Atmosphere and Ocean (Cambridge Atmospheric and Space Science Series) ReviewThe service provided is indeed very good. However, inevitably there exist some printing mistakes in this hard cover edition. Some pages are confused with others, also some characters are printed wrong. That's why I just give it 4 stats other than 5.Radiative Transfer in the Atmosphere and Ocean (Cambridge Atmospheric and Space Science Series) OverviewThis text provides a foundation in both the theoretical and practical aspects of radiative transfer, for advanced students of atmospheric, oceanic and environmental sciences. The transfer of solar and infrared radiation through optically-thick clouds, aerosol layer, and the oceanic mixed layer is presented through the use of heuristic models of scattering and absorption, and a systematic approach to formulation and solution of the radiative transfer equation. Problems such as the the transmission of ultraviolet radiation through the atmosphere and ocean, remote sensing, solar heating and infrared cooling processes, UV biological dose rates, and Greenhouse warming are solved using a variety of methods. This self-contained, systematic treatment will prepare students from a range of disciplines in problems concerning the effects of solar and infrared radiation on natural systems. The hardback edition received excellent reviews.

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Parameterization Schemes: Keys to Understanding Numerical Weather Prediction Models Review

Parameterization Schemes: Keys to Understanding Numerical Weather Prediction Models
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Parameterization Schemes: Keys to Understanding Numerical Weather Prediction Models ReviewI am so thankful that this book was written. I am a graduate student working on mesoscale meteorology models and good summaries of the many physics options was hard to find. This book fills that gap. It covers parameterization of land surface, soil & vegetation, water, surface layer & planetary boundary layer, convection, microphysics, radiation, clouds, and gravity waves. It is extremely well written (I read it cover to cover). It gives qualitative evaluations along with the necessary equations. The author reviews the basic science behind each type of parameterization at the beginning of each chapter, which avoids having to look back at other books for this information. The variables are defined after EACH equation so no having to look back to know what a letter stands for (every book should do this!). He also avoids unnecessary acronyms. He gives practical advices, such as at what resolution you should run convective vs. microphysics parameterizations. He also includes information on parameterizations for climate models.I highly recommend this book for anyone running NWP models.Parameterization Schemes: Keys to Understanding Numerical Weather Prediction Models OverviewNumerical weather prediction models play an increasingly important role in meteorology, both in short- and medium-range forecasting and global climate change studies. The most important components of any numerical weather prediction model are the subgrid-scale parameterization schemes, and the analysis and understanding of these schemes is a key aspect of numerical weather prediction. This book provides in-depth explorations of the most commonly used types of parameterization schemes that influence both short-range weather forecasts and global climate models. Several parameterizations are summarised and compared, followed by a discussion of their limitations. Review questions at the end of each chapter enable readers to monitor their understanding of the topics covered, and solutions are available to instructors at www.cambridge.org/9780521865401. This will be an essential reference for academic researchers, meteorologists, weather forecasters, and graduate students interested in numerical weather prediction and its use in weather forecasting.

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