Environmental Modelling and Prediction

Environmental Modelling and Prediction
Author: Gongbing Peng
Publisher: Springer Science & Business Media
Total Pages: 487
Release: 2013-03-09
Genre: Science
ISBN: 366204868X

In this book the authors consider the natural environment as an integrated system. The physical, chemical and biological processes that govern the behaviour of the environmental system can thus be understood through mathematical modelling, and their evolution can be studied by means of numerical simulation. The book contains a summary of various efficient approaches in atmospheric prediction, such as numerical weather prediction and statistical forecast of climate change, as well as other successful methods in land surface modelling. The authors explore new theories and methods in environment prediction such as systems analysis and information theory. Attention is given to new achievements in remote sensing tele-metering and geographic information systems.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Author:
Publisher:
Total Pages: 880
Release: 1994
Genre: Aeronautics
ISBN:

Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.

The National Oceanic and Atmospheric Administration’s National Weather Service Glossary

The National Oceanic and Atmospheric Administration’s National Weather Service Glossary
Author: The National Oceanic and Atmospheric Administration
Publisher: Lulu.com
Total Pages: 439
Release: 2012-11-16
Genre: Reference
ISBN: 1300414022

This glossary contains information on more than 2000 terms, phrases and abbreviations used by the NWS. Many of these terms and abbreviations are used by NWS forecasters to communicate between each other and have been in use for many years and before many NWS products were directly available to the public. It is the purpose of this glossary to aid the general public in better understanding NWS products. Previously, this book was only availableonline as a search tool. This hardcopy edition is based on material posted to the website as of late 2012. We believe this edition is more useful in many situations.

Atmospheric Modeling, Data Assimilation and Predictability

Atmospheric Modeling, Data Assimilation and Predictability
Author: Eugenia Kalnay
Publisher: Cambridge University Press
Total Pages: 364
Release: 2003
Genre: Mathematics
ISBN: 0521791790

This book, first published in 2002, is a graduate-level text on numerical weather prediction, including atmospheric modeling, data assimilation and predictability.

Integrating Multiple Sources of Information for Improving Hydrological Modelling: an Ensemble Approach

Integrating Multiple Sources of Information for Improving Hydrological Modelling: an Ensemble Approach
Author: Isnaeni Murdi Hartanto
Publisher: CRC Press
Total Pages: 183
Release: 2019-04-24
Genre: Science
ISBN: 1000468240

The availability of Earth observation and numerical weather prediction data for hydrological modelling and water management has increased significantly, creating a situation that today, for the same variable, estimates may be available from two or more sources of information. Yet, in hydrological modelling, usually, a particular set of catchment characteristics and input data is selected, possibly ignoring other relevant data sources. In this thesis, therefore, a framework is being proposed to enable effective use of multiple data sources in hydrological modelling. In this framework, each available data source is used to derive catchment parameter values or input time series. Each unique combination of catchment and input data sources thus leads to a different hydrological simulation result: a new ensemble member. Together, the members form an ensemble of hydrological simulations. By following this approach, all available data sources are used effectively and their information is preserved. The framework also accommodates for applying multiple data-model integration methods, e.g. data assimilation. Each alternative integration method leads to yet another unique simulation result. Case study results for a distributed hydrological model of Rijnland, the Netherlands, show that the framework can be applied effectively, improve discharge simulation, and partially account for parameter and data uncertainty.