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Titlebook: Non-Hydrostatic Free Surface Flows; Oscar Castro-Orgaz,Willi H. Hager Book 2017 Springer International Publishing AG, part of Springer Nat

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for assignment to another class. A typical example of this class of recognition problem is picture recognition or more generally speaking, scene analysis. In this class of recognition problems, the patterns under consideration are usually quite complex and the number of features required is often ve
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Introduction,nt of this theory, starting with Boussinesq (.) treatise, pursued and expanded by the developments of Fawer (.), Serre (.), Matthew (.) and Peregrine (.). The importance of non-hydrostatic depth-averaged free surface flow modeling is then discussed in the context of environmental fluid mechanics, in
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Vertically Integrated Non-hydrostatic Free Surface Flow Equations,resented, thereby assuming material surfaces on the bottom and the top of the flowing layer. These are presented as evolution equations of the velocity field and stress tensor. Subsequently, the general method to mathematically determine the distributions of the vertical velocity and vertical non-hy
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Seepage Flows,of the water table is deduced, coupling the two-dimensional velocity field derived from the Picard iteration method (Matthew .) with the velocity components obtainable from Darcy’s law for a homogeneous and isotropic soil. The equation is valid for one-dimensional steady flows over an arbitrary and
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Viscous Channel Flows,l’s boundary layer theory. Scale effects on flows over round-crested weirs, originating from surface tension and viscosity, are considered in a general weir-flow equation. An analytical solution for the boundary layer development over round-crested weirs is produced and compared with detailed one- a
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Oscar Castro-Orgaz,Willi H. Hagerfic antibody synthesis. It was clear since long that interaction of antigen with Ig receptors alone could not be responsible for B cell activation, because two types of antigens existed; thymus-inde-pendent antigens that could directly activate B cells and thymus-dependent antigens that by themselve
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