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Linear Theory of Hydrologic Systems

Linear Theory of Hydrologic Systems
Author: United States. Department of Agriculture
Publisher:
Total Pages: 327
Release: 1973
Genre: Hydrology
ISBN:

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Linear Theory of Hydrologic Systems

Linear Theory of Hydrologic Systems
Author: United States. Agricultural Research Service
Publisher:
Total Pages: 327
Release: 1973
Genre:
ISBN:

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Deterministic Methods in Systems Hydrology

Deterministic Methods in Systems Hydrology
Author: James C.I. Dooge
Publisher: CRC Press
Total Pages: 326
Release: 2003-02-01
Genre: Science
ISBN: 1482234556

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Deterministic Methods in Systems Hydrology presents the basic theory underlying the multitude of parameter-rich models which dominate the hydrological literature. Its objectives are to introduce the elements of systems science as applied to hydrological problems; to present flood prediction and flood routing as problems in linear systems theory, clarifying the basic assumptions and evaluating their accuracy; and to review and to evaluate some deterministic models of components of the hydrological cycle, with a view to assembling the most appropriate model of catchment response, for a particular problem in applied hydrology. The material is developed in two parts: the first four chapters present the systems viewpoint, the nature of hydrological systems, some systems mathematics and their application to direct storm runoff. The final four chapters cover linear conceptual models of direct runoff, the fitting of conceptual models to data, simple models of subsurface flow and non-linear deterministic models.


Watershed Hydrology

Watershed Hydrology
Author: Vijay P. Singh
Publisher: Allied Publishers
Total Pages: 588
Release: 2003
Genre: Groundwater
ISBN: 9788177645477

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Recent Advances in the Modeling of Hydrologic Systems

Recent Advances in the Modeling of Hydrologic Systems
Author: D.S Bowles
Publisher: Springer Science & Business Media
Total Pages: 654
Release: 2012-12-06
Genre: Science
ISBN: 9401134804

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Modeling of the rainfall-runoff process is of both scientific and practical significance. Many of the currently used mathematical models of hydrologic systems were developed a genera tion ago. Much of the effort since then has focused on refining these models rather than on developing new models based on improved scientific understanding. In the past few years, however, a renewed effort has been made to improve both our fundamental understanding of hydrologic processes and to exploit technological advances in computing and remote sensing. It is against this background that the NATO Advanced Study Institute on Recent Advances in the Modeling of Hydrologic Systems was organized. The idea for holding a NATO ASI on this topic grew out of an informal discussion between one of the co-directors and Professor Francisco Nunes-Correia at a previous NATO ASI held at Tucson, Arizona in 1985. The Special Program Panel on Global Transport Mechanisms in the Geo-Sciences of the NATO Scientific Affairs Division agreed to sponsor the ASI and an organizing committee was formed. The committee comprised the co directors, Professor David S. Bowles (U.S.A.) and Professor P. Enda O'Connell (U.K.), and Professor Francisco Nunes-Correia (Portugal), Dr. Donn G. DeCoursey (U.S.A.), and Professor Ezio Todini (Italy).