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008 110218s2006 flua b 001 0 eng
020 _a0849333970 (hbk.)
039 9 _a201102181745
_bVLOAD
_c200609201650
_deunice
_y200609120948
_zmeena
082 0 4 _a532.05
_bWAR
100 1 _aWarsi, Z. U. A.
_9238384
245 1 0 _aFluid dynamics :
_btheoretical and computational approaches /
_cZ.U.A. Warsi.
250 _a3rd ed.
260 _aBoca Raton :
_bTaylor & Francis,
_cc2006.
300 _a845 p. :
_bill. ;
_c27 cm.
505 0 _aCh. 1. Kinematics of fluid motion. Ch. 2. The conservation laws and the kinetics of flow. Ch. 3 The Navier-Stokes equations. Ch. 4. Flow of inviscid fluids. - Pt. I Inviscid incompressible flow. - Pt. II Inviscid compressible flow. Ch. 5. Laminar viscous flow. - Pt. I. Exact solutions. - Pt. II. Boundary layers. - Pt. III. Navier-Stokes formulation. Ch. 6. Turbulent flow. - Pt. I. Stability theory and the statistical description of turbulence. - Pt. II. Development of averaged equations. - Pt. III. Basic empirical and boundary layer results in turbulence. - Pt. IV. Turbulence modeling. Mathematical exposition 1 : base vectors and various representations. - Mathematical exposition 2 : theorems of Gauss, Green, and Stokes. - Mathematical exposition 3 : geometry of space and plane curves. - Mathematical exposition 4 : formulas for coordinate transformation. - Mathematical exposition 5 : potential theory. - Mathematical exposition 6 : singularities of the first-order ODEs. - Mathematical exposition 7 : geometry of surfaces. - Mathematical exposition 8 : finite difference approximation applied to PDEs. - Mathematical exposition 9 : frame invariancy. - Index.
650 0 _aFluid dynamics.
_9202759
920 _aENG : 32470
999 _c44726
_d44726