Fr. 135.00

Modeling, Control and Optimization of Water Systems - Systems Engineering Methods for Control and Decision Making Tasks

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

This book provides essential background knowledge on the development of model-based real-world solutions in the field of control and decision making for water systems. It presents system engineering methods for modelling surface water and groundwater resources as well as water transportation systems (rivers, channels and pipelines). The models in turn provide information on both the water quantity (flow rates, water levels) of surface water and groundwater and on water quality. In addition, methods for modelling and predicting water demand are described. Sample applications of the models are presented, such as a water allocation decision support system for semi-arid regions, a multiple-criteria control model for run-of-river hydropower plants, and a supply network simulation for public services.

Sommario

Surface water modelling.- Groundwater modelling.- Coupling of groundwater and surface water models.- Simulation of pipeline systems.- Model based decision support systems.- Applications.

Info autore

Thomas Rauschenbach, Jg. 1952, Dr. rer. soc., Dipl. Päd., ist Professor für Sozialpädagogik am Institut für Sozialpädagogik, Erwachsenenbildung und Pädagogik der frühen Kindheit der Universtät Dortmund.

Riassunto

This book provides essential background knowledge on the development of model-based real-world solutions in the field of control and decision making for water systems. It presents system engineering methods for modelling surface water and groundwater resources as well as water transportation systems (rivers, channels and pipelines). The models in turn provide information on both the water quantity (flow rates, water levels) of surface water and groundwater and on water quality. In addition, methods for modelling and predicting water demand are described. Sample applications of the models are presented, such as a water allocation decision support system for semi-arid regions, a multiple-criteria control model for run-of-river hydropower plants, and a supply network simulation for public services.

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