01848nam a2200289 a 4500001001400000003000700014005001700021008004100038020002400079020001500103040000800118100001900126245009900145260004800244300004600292490007100338500002200409504005000431505029200481520060900773650003501382650003201417650004001449700002701489700002301516830001901539vtls000092840KUKTEM20251125103256.0151203t2013 xxka f 001 0 eng d a9781138000247 (hbk) a1138000248 aUMP1 aRodi, Wolfgang10aLarge-eddy simulation in hydraulics /cWolfgang Rodi, George Constantinescu, Thorsten Stoesser aLeiden, The Netherlands :bCRC Press,c2013 axiii, 252 p. :bill.(some col.) ;c25 cm.1 aIAHR monograph (International Association for Hydraulic Research). a"A Balkema book." aIncludes bibliographical references and index0 a1. Introduction -- 2. Basic methodology of LES -- 3. Subgrid-scale (SGS) models -- 4. Numerical methods -- 5. Implicit LES (ILES) -- 6. Boundary and initial conditions -- 7. Hybrid RANS-LES methods -- 8. Education of turbulence structures -- 9. Application examples of LES in hydraulics. aComplex turbulence phenomena are of great practical importance in hydraulics, including environmental flows, and require advanced methods for their successful computation. The Large Eddy Simulation (LES), in which the larger-scale turbulent motion is directly resolved and only the small-scale motion is modelled, is particularly suited for complex situations with dominant large-scale structures and unsteadiness. Due to the increasing computer power, LES is generally used more and more in Computational Fluid Dynamics. Also in hydraulics, it offers great potential, especially for near-field probl 0aHydraulicsxSimulation methods 0aEddiesxMathematical models 0aFluid dynamicsxMathematical models1 aConstantinescu, George1 aStoesser, Thorsten 0aIAHR monograph