02058nam0 2200421 i 450 VAN012690620230626023635.327N978303013325220200218d2019 |0itac50 baengCH|||| |||||High performance computing in science and engineering '18transactions of the high performance computing center, Stuttgart (HLRS) 2018Wolfgang E. Nagel, Dietmar H. Kröner, Michael M. Resch editorsChamSpringer2018viii, 514 p.ill.24 cmVAN0236825High performance computing in science and engineering '18173249990-XXOperations research, mathematical programming [MSC 2020]VANC025650MF97M50Physics, astronomy, technology, engineering (aspects of mathematics education) [MSC 2020]VANC028191MF65CxxProbabilistic methods, stochastic differential equations [MSC 2020]VANC028329MFComputational science and engineeringKW:KHigh Performance ComputingKW:KModelingKW:KSimulationKW:KVector supercomputersKW:KCHChamVANL001889KronerDietmar H.VANV087390NagelWolfgang E.VANV087389ReschMichael M.VANV087391Springer <editore>VANV108073650Resch, M. M.Resch, Michael M.VANV106296ITSOL20240614RICAhttp://doi.org/10.1007/978-3-030-13325-2E-book – Accesso al full-text attraverso riconoscimento IP di Ateneo, proxy e/o ShibbolethBIBLIOTECA DEL DIPARTIMENTO DI MATEMATICA E FISICAIT-CE0120VAN08NVAN0126906BIBLIOTECA DEL DIPARTIMENTO DI MATEMATICA E FISICA08CONS e-book 1605 08eMF1605 20200218 High performance computing in science and engineering '181732499UNICAMPANIA03708nam 2200937z- 450 991055735610332120220111(CKB)5400000000042328(oapen)https://directory.doabooks.org/handle/20.500.12854/76385(oapen)doab76385(oapen)76385(EXLCZ)99540000000004232820202201d2021 |y 0engurmn|---annantxtrdacontentcrdamediacrrdacarrierTurbulence and Flow-Sediment Interactions in Open-Channel FlowsBasel, SwitzerlandMDPI - Multidisciplinary Digital Publishing Institute20211 online resource (192 p.)3-03943-899-9 3-03943-900-6 The main focus of this Special Issue of Water is the state-of-the-art and recent research on turbulence and flow-sediment interactions in open-channel flows. Our knowledge of river hydraulics is deepening, thanks to both laboratory/field experiments related to the characteristics of turbulence and their link to erosion, transport, deposition, and local scouring phenomena. Collaboration among engineers, physicists, and other experts is increasing and furnishing new inter-/multidisciplinary perspectives to the research of river hydraulics and fluid mechanics. At the same time, the development of both sophisticated laboratory instrumentation and computing skills is giving rise to excellent experimental-numerical comparative studies. Thus, this Special Issue, with ten papers by researchers from many institutions around the world, aims at offering a modern panoramic view on all the above aspects to the vast audience of river researchers.Technology: general issuesbicsscADCPAmazon Riveranisotropybedforms morphologybottom turbulencebridge pierdepositiondisentrainmentdunal bedformejectionsentrainmentequilibrium scour deptherosionfreshwater dischargegravel bedshairpin vortex packethorizontal cylinderhorseshoe vortexhydraulicslaboratory experimentslocal scouringnew scaling of scour depthopen channel flowopen-channel flowsPhysical hydraulic modelingquadrant analysisReynolds stressrigid vegetationriver confluenceriver hydrodynamicsscalescourScour and Velocity fieldsediment kinematicssediment transportsedimentssurface and subsurface flowssuspended sediment concentrationTaylor's frozen turbulence hypothesistransportturbulenceturbulence interactionsturbulence structuresturbulent flowtwo-layer circulationvelocity fieldwall-wake flowwavelet coherencyYeongsan estuaryTechnology: general issuesGaudio Robertoedt1326452Gaudio RobertoothBOOK9910557356103321Turbulence and Flow-Sediment Interactions in Open-Channel Flows4416433UNINA