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Stochastic and statistical methods in hydrology and environmental engineering time series analysis in hydrology and environmental engineering Libro electrónico editors: Keith W. Hipel, A. Ian McLeod, U. S. Panu, Vijay P. Singh

Colaborador(es): Tipo de material: TextoTextoIdioma: Inglés Detalles de publicación: Dordrecht Springer science c1994Descripción: xix, 474 páginas gráf., mapa centímetrosISBN:
  • 9048143799
  • 9789048143795
  • 9789401730839 (Online)
Recursos en línea: Formatos físicos adicionales disponibles:
  • Disponible en línea
Resumen: International experts from around the globe present a rich variety of intriguing developments in time series analysis in hydrology and environmental engineering. Climatic change is of great concern to everyone and significant contributions to this challenging research topic are put forward by internationally renowned authors. A range of interesting applications in hydrological forecasting are given for case studies in reservoir operation in North America, Asia and South America. Additionally, progress in entropy research is described and entropy concepts are applied to various water resource systems problems. Neural networks are employed for forecasting runoff and water demand. Moreover, graphical, nonparametric and parametric trend analyses methods are compared and applied to water quality time series. Other topics covered in this landmark volume include spatial analyses, spectral analyses and different methods for stream-flow modelling.
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International experts from around the globe present a rich variety of intriguing developments in time series analysis in hydrology and environmental engineering. Climatic change is of great concern to everyone and significant contributions to this challenging research topic are put forward by internationally renowned authors. A range of interesting applications in hydrological forecasting are given for case studies in reservoir operation in North America, Asia and South America. Additionally, progress in entropy research is described and entropy concepts are applied to various water resource systems problems. Neural networks are employed for forecasting runoff and water demand. Moreover, graphical, nonparametric and parametric trend analyses methods are compared and applied to water quality time series. Other topics covered in this landmark volume include spatial analyses, spectral analyses and different methods for stream-flow modelling. Inglés

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