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Titlebook: Environmental Modelling and Prediction; Gongbing Peng,Lance M. Leslie,Yaping Shao Book 2002 Springer-Verlag Berlin Heidelberg 2002 Atmosph

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发表于 2025-3-21 19:21:20 | 显示全部楼层 |阅读模式
书目名称Environmental Modelling and Prediction
编辑Gongbing Peng,Lance M. Leslie,Yaping Shao
视频video
概述Summarizing the recent development (state-of-the-art).International team of specialists.Theory and methods combined with the case analysis
图书封面Titlebook: Environmental Modelling and Prediction;  Gongbing Peng,Lance M. Leslie,Yaping Shao Book 2002 Springer-Verlag Berlin Heidelberg 2002 Atmosph
描述In this book the authors consider the natural environment as an integrated system and describe a cohesive approach to its modelling and prediction. The book emphasises the mathematical representation and numerical simulation of the interactions between the various environmental components and those of the environmental processes, including physical, chemical and biological. Furthermore, it summarises some of the recent progress and new developments in the modelling and prediction of the atmosphere, ocean, land surface, continental hydrosphere, cryosphere, etc. The authors also explore new theoretical frameworks in environmental prediction, such as systems analysis and statistical-dynamic modelling. The applications of remote sensing and geographic information systems in environmental modelling and prediction are discussed. Examples of integrated environmental modelling are given
出版日期Book 2002
关键词Atmosphere; Atmosphäre; Climate; Klimaschutz; Meteorologie; Ocean; Smog; Snow; Weather; biosphere; information
版次1
doihttps://doi.org/10.1007/978-3-662-04868-9
isbn_softcover978-3-642-08685-4
isbn_ebook978-3-662-04868-9
copyrightSpringer-Verlag Berlin Heidelberg 2002
The information of publication is updating

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发表于 2025-3-21 22:27:44 | 显示全部楼层
The Environmental Dynamic System,errestrial biosphere. Here, we will focus on that part of the atmosphere consisting mainly the troposphere and the lower part of the stratosphere, and on the land surface including the soil layer down to depth of some 50 to 100 m. This system has several fundamental features. First, a wide range of
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Land Surface Processes,verned not only by the turbulent and molecular motions in the atmosphere, but also by surface soil hydrological processes and the behaviour of the continental biosphere. From this point of view, the land surface can be defined as a layer comprising the lower part of the atmospheric boundary layer, t
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Hydrological Modelling and Forecasting,ance, its high latent heat and high specific heat capacity mean it significantly influences the climate system. In the environment, water exists in four states (see Fig. 6.1), namely, as liquid and vapour in the atmosphere (A); surface water (SU) including river, ice, snow and the ocean; soil water
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Modelling and Prediction of the Terrestrial Biosphere,. These studies allowed us to predict crop yields, improve forest managements, understand the dynamics of ecosystems population, and evaluate the impacts of land-use on soil erosion and water supply. The ecological models used in these studies were often run in a stand alone mode, i.e., they were no
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Theoretical Basis of Biological Models in Environmental Simulation,ological processes as well as physical and chemical processes. The most widely used model for the description of enzyme and/or bacteria catalysed reactions, cell growth, and prey-predator relation is the so-called Michaelis-Menton or Monod equation. Although more complex models exist for the descrip
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Modelling of Photochemical Smog,el ozone concentrations, has been one of the main topics of air quality research in the last three decades. The chemistry of ground-level ozone is different from that of stratospheric ozone. Photochemical smog is a anthropogenic air pollution problem in many urban areas around the world, which is re
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