000753612 000__ 05491cam\a2200541Ii\4500 000753612 001__ 753612 000753612 005__ 20230306141607.0 000753612 006__ m\\\\\o\\d\\\\\\\\ 000753612 007__ cr\cn\nnnunnun 000753612 008__ 160202s2016\\\\sz\\\\\\ob\\\\100\0\eng\d 000753612 019__ $$a937404506 000753612 020__ $$a9783319277509$$q(electronic book) 000753612 020__ $$a3319277502$$q(electronic book) 000753612 020__ $$z9783319277493 000753612 0247_ $$a10.1007/978-3-319-27750-9$$2doi 000753612 035__ $$aSP(OCoLC)ocn936379025 000753612 035__ $$aSP(OCoLC)936379025$$z(OCoLC)937404506 000753612 040__ $$aN$T$$beng$$erda$$epn$$cN$T$$dYDXCP$$dGW5XE$$dOCLCO$$dIDEBK$$dAZU$$dCOO$$dOCLCF$$dOCLCO$$dEBLCP$$dOCLCO$$dOCLCQ$$dOCLCO$$dCDX 000753612 049__ $$aISEA 000753612 050_4 $$aTC171 000753612 08204 $$a627.042$$223 000753612 1112_ $$aInternational School of Hydraulics$$n(34th :$$d2015 :$$cŻelechów Palace) 000753612 24510 $$aHydrodynamic and mass transport at freshwater aquatic interfaces$$h[electronic resource] :$$b34th International School of Hydraulics /$$cPaweł M. Rowiński, Andrea Marion, editors. 000753612 264_1 $$aSwitzerland :$$bSpringer,$$c2016. 000753612 264_4 $$c©2016 000753612 300__ $$a1 online resource (xvii, 342 pages). 000753612 336__ $$atext$$btxt$$2rdacontent 000753612 337__ $$acomputer$$bc$$2rdamedia 000753612 338__ $$aonline resource$$bcr$$2rdacarrier 000753612 4901_ $$aGeoPlanet: Earth and planetary sciences 000753612 504__ $$aIncludes bibliographical references. 000753612 5050_ $$aSeries Editors; Managing Editor; Advisory Board; Preface; Acknowledgments; Contents; 1 Time-Averaged Hydrodynamic Equations for Mobile-Bed Conditions; Abstract; 1 Introduction; 2 Theoretical Background; 3 Time-Averaged Hydrodynamic Equations; 3.1 Time-Averaged Continuity, Momentum, and Mass Transport Equations; 3.2 Second-Order Balance Equations for Velocity Moments; 4 Discussion; 5 Conclusions; Acknowledgements; References; 2 Potential Application of Mesh-Free SPH Method in Turbulent River Flows; Abstract; 1 Introduction; 2 Mesh-Free Particle Models for Open Channel Flow. 000753612 5058_ $$a2.1 Turbulence Modelling in Particle Methods2.2 Rough Bed Boundary Treatment in Particle Methods; 3 SPH Model and Its Application; 4 Conclusions; Acknowledgements; References; 3 Interaction Between Storm Water Conduit Flow and Overland Flow for Numerical Modelling of Urban Area Inundation; Abstract; 1 Introduction; 2 Model of Storm Water Pipe Flow; 3 Model of Overland Water Flow; 4 Application of Quasi Coupled Models; 5 Model of Interaction Between Pipe and Surface Flow; 6 Laboratory Experiment of Flow Interaction; 7 Conclusions; Acknowledgments; References. 000753612 5058_ $$a4 Modeling of Ice Passage Through Reservoirs System on the Vistula RiverAbstract; 1 Introduction; 2 Input Data; 3 Governing Equation; 4 Simulation Results; 5 Conclusions; References; 5 Development of a Laboratory System and 2D Routing Analysis to Determine Solute Mixing Within Aquatic Vegetation; Abstract; 1 Introduction; 1.1 Background; 1.2 Research Aims; 2 Experimental Methods; 2.1 Point Probe Fluorometry; 2.2 Laser Induced Fluorometry; 3 Results; 3.1 Point Probe Fluorometry; 3.2 LIF; 4 Discussion; 5 Conclusion; References. 000753612 5058_ $$a6 Feasibility of the Porous Zone Approach to Modelling Vegetation in CFDAbstract; 1 Introduction; 1.1 Modelling Vegetation; 1.2 CFD Modelling of Ponds; 2 Methodology; 2.1 Sensitivity of 1/\alpha and C_{2}; 2.2 Porous Zone Parameter Fitting; 3 Results and Discussion; 3.1 The Porous Zone Problem; 3.2 Best Fit Values of C_{2} for Submerged Vegetation; 3.3 The Porous Zone Solution?; 4 Conclusions; Acknowledgments; References; 7 A Comparison of Three Solute Transport Models Using Mountain Stream Tracer Experiments; Abstract; 1 Introduction; 2 Solute Transport Models. 000753612 5058_ $$a2.1 The Advection-Dispersion Model (ADM)2.2 The Transient Storage Model (TSM); 2.3 The Aggregated Dead Zone Model (ADZM); 3 Data Collection; 4 Application of Models; 5 Results and Discussion; 6 Conclusions; References; 8 Vegetation and Flow Rate Impact on In-stream Longitudinal Dispersion and Retention Processes; Abstract; 1 Introduction; 2 STIR model; 3 Study site and methods; 3.1 Study site; 3.2 Methods; 4 Results and discussion; 5 Conclusions; Acknowledgments; References; 9 Effects of Vegetation Density and Wetland Aspect Ratio Variation on Hydraulic Efficiency of Wetlands; Abstract. 000753612 506__ $$aAccess limited to authorized users. 000753612 520__ $$aThis book presents selected contributions of the 34th International School of Hydraulics that was held in May 2015 in Zelechów, Poland. It gives an overview about the state-of-the-art in environmental hydraulics. A special emphasis is put upon physical, biochemical and ecological processes that act at interfaces in natural surface water bodies but also other important hydraulic problems are considered. The achievements of well-known researchers from all over the world as well as the results obtained by young researchers, among others within a Marie Curie funded Initial Training Network, led by the University of Padua (HYTECH - HYdrodynamic Transport at Ecologically Critical Heterogeneous Interfaces) are gathered in this volume. 000753612 650_0 $$aHydrodynamics$$vCongresses. 000753612 650_0 $$aMass transfer$$vCongresses. 000753612 7001_ $$aRowiński, Paweł M.,$$eeditor. 000753612 7001_ $$aMarion, Andrea,$$eeditor. 000753612 77608 $$iPrint version:$$z9783319277493 000753612 830_0 $$aGeoPlanet. 000753612 852__ $$bebk 000753612 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-27750-9$$zOnline Access$$91397441.1 000753612 909CO $$ooai:library.usi.edu:753612$$pGLOBAL_SET 000753612 980__ $$aEBOOK 000753612 980__ $$aBIB 000753612 982__ $$aEbook 000753612 983__ $$aOnline 000753612 994__ $$a92$$bISE