Download Boundary Element Technology VII by J. C. Wu (auth.), C. A. Brebbia, M. S. Ingber (eds.) PDF

By J. C. Wu (auth.), C. A. Brebbia, M. S. Ingber (eds.)

7th overseas convention on Boundary aspect expertise 'Betech 92', held on the college of latest Mexico in Albuquerque, June 1992

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Boundary Element Technology VII

7th overseas convention on Boundary aspect expertise 'Betech 92', held on the college of recent Mexico in Albuquerque, June 1992

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L. Koch, A spreading drop model for plume-surface interaction (abstract). EOS 72, 83 (1991). J. G. Leal, The stability of drop shapes for translation at zero Reynolds number through a quiescent fluid. Phys. Fluids A 1, 1309-1313 (1989). J. G. Leal, An experimental investigation on the stability of viscous drops translating through a quiescent fluid. Phys. Fluids A 2, 2103-2109 (1990). , The Mathematical Theory of Viscous Incompressible Flow. Gordon and Breach (1963). H. G. Leal, The motion of a sphere in the presence of a deformable interface.

Stone, Deformation of fluid-fluid interfaces in multiphase systems (abstract). Bull. Am. Phys. Soc. 36,2707 (1991). J. A. Stone, Buoyancy driven lithospheric slabs: Deformation, retrograde motion and the effect of compositional discontinuities (abstract). EOS 72, 494 (1991). J. S. Udell, Boundary integral analysis of the creeping flow of long bubbles in capillaries. J. Appl. Meeh. 56, 211-217 (1989). J. S. Udell, Axisymmetric creeping motion of drops through circular tubes. J. Fluid Meeh. 210, 565-591 (1990).

Mochon, Stokes flow for a Stokeslet between two parallel flat plates. J. Eng. Math. 10,287-303 (1976). [35] Liron, N. and R. Shahar, Stokes flow due to a Stokeslet in a pipe. J. Fluid Meeh. 86,727-744 (1978). , Selective withdrawal from a viscous two-layer system. J. Fluid Mech. 198, 231-254 (1989). R. C. Kerr, The propagation of two-dimensional and axisymmetric viscous gravity currents at a fluid interface. J. Fluid Mech. 203, 215-249 (1989). S. N. Mansour, Oscillations of drops in zero gravity with weak viscous effects.

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