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Hydraulic design and management of wastewater transport systems /

Hydraulic Design and Management of Wastewater Transport Systems is a manual resulting from the research project CAPWAT (CAPacity loss in wasteWATer pressure pipelines), which researched the mechanisms for the creation, stagnation and discharge of gas bubbles in wastewater pressure pipelines. During...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Tukker, Michiel (Autor), Kooij, Kees (Autor), Pothof, Ivo (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: London, England : IWA Publishing, 2016.
Colección:CAPWAT Manual
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Necessity of the manual
  • Scope of the manual
  • Authors and editorial staff
  • Reader's guide
  • Designing wastewater transportation systems
  • Pipeline design
  • Boundary conditions
  • Determining the dimensions of the main
  • Crossings
  • Arrangements for the prevention and removal of gas bubbles
  • Network systems
  • Designing the pumping station
  • Boundary conditions
  • Pump set-up
  • Components
  • Determining the operating range and selecting the pump
  • Receiving basin
  • Design of air valves
  • Dynamic effects
  • Basic assumptions
  • Water hammer analysis without surge protections
  • Inventory of solutions for preventing impermissible pressures
  • Dimensioning water hammer surge protections
  • Normal and incidental operations
  • Design aspects for maintaining capacity
  • Performance indicators
  • Measuring locations for pressure and flow rate
  • Provisions for maintaining capacity
  • Review of the overall system design
  • Controlling the air in pressure pipelines
  • Check lists
  • Commissioning of the system
  • Boundary conditions
  • Drafting an acceptance test plan
  • Benchmark testing
  • Maintaining hydraulic capacity
  • Measurements in wastewater transport systems
  • Criteria for capacity reduction
  • Analysis of a capacity problem, Appendices, Characteristics of drinking water, Basic equations, Transport losses, Receiving basins and inlet structures, Pumps in pipeline systems, Valves, Water hammer in pipeline systems, Gas bubbles in pipelines, Flow rate pattern during a pump start, Pressure change after draining, Dynamic measurements.