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Environmental Hydraulics Research
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This book aims to provide research and engineering applications related to water and hydraulic problems. It is comprised of scientific papers in all topics of hydraulics, in particular, on sustainable water management, environmental hydraulics, ecohydraulics, water–energy nexus, and systems protection and efficiency. Safety and innovation issues, interdisciplinary problems, and linkage of theory to experimental and field applications can also be found within. Solutions of water problems in the form of prediction models, flow simulations, engineering systems, monitoring, management strategies covering scientific investigations and/or experimental or field studies of flow behaviour, hydrodynamics, and climate changes effects and adaptation, new design solutions, innovative approaches in the field of environment, hydraulics, techniques, methods, and analyses to address the new challenges in environmental hydraulics are alo presented and explored. This topic is studied both from a technical and environmental point of view, with the objective of protecting and enhancing the quality of the environment. In a cross-disciplinary field of study, this book comprises open channel/river flows and pressurised systems, combining, among others, new technological, social, and environmental hydraulic challenges, working in water-related fields with available information, new concepts and tools, new design solutions, eco-friendly technologies, and the advanced materials necessary to address the increasing challenges of ensuring a sustainable water environment by promoting the adaptation, flexibility, integration, and sustainability of recognised environmental solutions.

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Keywords

  • ADV
  • area contraction ratio
  • bed shear stress
  • CAES
  • caffa3d
  • canal pool
  • CFD
  • CFD models
  • channel regulation
  • cohesive sediments
  • consolidation
  • Darcy’s law
  • degradation
  • delay time
  • dissolved phosphorus
  • downstream constant water level
  • E. coli
  • eco-design
  • energy concept
  • energy dissipation
  • energy dissipation rate
  • Energy Storage
  • engineering structure
  • environmentally-friendly solutions
  • Erosion
  • erosion and energy dissipaters
  • fecal indicator bacteria
  • feedforward control
  • fish aggregation effect
  • fish protection
  • fitting coefficients
  • flocculation
  • fractal model
  • Free Surface Flows
  • Frozen soil
  • FTW
  • Groundwater
  • head loss
  • hybrid hydro-wind-solar solutions
  • hydraulic conductivity
  • hydraulic efficiency
  • hydraulic structure design and management
  • hydraulic structures
  • hydraulics of renewable energy systems
  • hydro-energy
  • hydrodynamic condition
  • hydrodynamic model
  • Hydrodynamics
  • hydrologic and ecologic challenges
  • hydropower systems
  • hydrostatic pressure machine
  • intake
  • jet falling
  • Lattice Boltzmann method
  • Lifespan
  • mathematical modelling
  • micro hydropower
  • new hydraulic concepts
  • new power generation
  • open source
  • over-current capability
  • permeable spur dike
  • physical modeling
  • Poyang Lake
  • pressure fluctuations
  • pressurised flows
  • pulsating pressure
  • pulsating velocity
  • pumped hydro storage (PHS)
  • release characteristics
  • river–lake system
  • rotating circular flume
  • scale model test
  • SCS curve number
  • sediment deposition
  • similarity law
  • sliding mesh
  • soil freezing curve
  • soil structure
  • stormwater reuse
  • submerge ratio
  • surface disturbances
  • suspended vegetation
  • sustainable developments
  • sustainable efficiency
  • SVF
  • technical feasibility
  • Technology, engineering, agriculture
  • Technology: general issues
  • Three Gorges Dam
  • time-averaged pressure
  • time-averaged velocity
  • toothed internal energy dissipaters (TIED)
  • transient flow
  • velocity profile
  • volume compensation
  • volume of fluid
  • water flow diversity
  • water jet
  • water level
  • water systems efficiency
  • water well
  • water well management
  • well ageing
  • well operation

Links

DOI: 10.3390/books978-3-0365-0809-2

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