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{ "item_title" : "Modeling, Control and Optimization of Water Systems", "item_author" : [" Thomas Rauschenbach", "Thomas Bernard", "Albrecht Gnauck "], "item_description" : "IntroductionWhat are models in the field of systems engineering?Why do we need systems engineering methods for water systems modelling?Surface water modellingTemporal and spatial discretization of Saint-Venant-EquationsRivers / open channelsReservoirsRetention areasCatchment areasWater quality models for surface water systemsGroundwater modellingGoverning equations in groundwater modellingDerivation of input data and parametersInitial and boundary conditionsReduced groundwater modelsCoupling of groundwater and surface water modelsSimulation of pipeline systemsDrinking water supply system of citiesLong-distance water supplyWater demand modellingHouseholdsAgricultureIndustryModel based decision support systemsStructure of a model based decision support systemWhich simulation models are used?Using optimization techniquesApplicationsProject Beijing WaterPipeline network simulation for public servicesWater quality modelling for river HavelOptimal control of run-of-river hydropower plants", "item_img_path" : "https://covers2.booksamillion.com/covers/bam/3/64/216/025/3642160255_b.jpg", "price_data" : { "retail_price" : "109.99", "online_price" : "109.99", "our_price" : "109.99", "club_price" : "109.99", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Modeling, Control and Optimization of Water Systems|Thomas Rauschenbach

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

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Overview

  1. Introduction
    1. What are models in the field of systems engineering?
    2. Why do we need systems engineering methods for water systems modelling?

  2. Surface water modelling
    1. Temporal and spatial discretization of Saint-Venant-Equations
    2. Rivers / open channels
    3. Reservoirs
    4. Retention areas
    5. Catchment areas
    6. Water quality models for surface water systems

  3. Groundwater modelling
    1. Governing equations in groundwater modelling
    2. Derivation of input data and parameters
    3. Initial and boundary conditions
    4. Reduced groundwater models

  4. Coupling of groundwater and surface water models
  5. Simulation of pipeline systems

    1. Drinking water supply system of cities

    1. Long-distance water supply

  1. Water demand modelling
    1. Households
    2. Agriculture
    3. Industry

  2. Model based decision support systems
    1. Structure of a model based decision support system
    2. Which simulation models are used?
    3. Using optimization techn

iques

  • Applications
    1. Project "Beijing Water"
    2. Pipeline network simulation for public services
    3. Water quality modelling for river Havel

  • Optimal control of run-of-river hydropower plants
  • This item is Non-Returnable

    Details

    • ISBN-13: 9783642160257
    • ISBN-10: 3642160255
    • Publisher: Springer
    • Publish Date: December 2015
    • Dimensions: 9.21 x 6.14 x 0.75 inches
    • Shipping Weight: 1.35 pounds
    • Page Count: 303

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