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Numerical Solution of Conservation Laws
Numerical Methods for Computation of MultiDimensional
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Aachen adverse pressure gradients aerodynamic aerofoil airfoil angle of attack approximation arterial biomechanics blood vessels boundary conditions boundary-layer interaction calculation capillary coefficients complex computation constant constitutive equations corresponding curve denotes difference scheme discontinuity displacement thickness domain downstream Eckelmann experimental Figure finite flow field fluid dynamics fluid mechanics high Reynolds numbers initial interalveolar inviscid Kármán linear lung mapping function mesh Navier-Stokes equations normal numerical solution obtained parameters particles pattern perfused plane potential flow pressure distribution pressure gradient probe problem pulmonary region separation shear shock wave shown in Fig smooth strake structure surface system of profiles theory third-order scheme tissue trailing edge transmural pressure transonic turbulent boundary layers two-dimensional unsteady upstream Mach number variables vasa vasorum velocity components venule viscous vortex filament vortex rings vortex tube vorticity distribution wall wind tunnel wing