Wu Wang-yi, Richard Skalak. The Stokes Flow from Half-Space to Semi-Infinite Circular Cylinder[J]. Applied Mathematics and Mechanics, 1985, 6(1): 9-23.
Citation:
Wu Wang-yi, Richard Skalak. The Stokes Flow from Half-Space to Semi-Infinite Circular Cylinder[J]. Applied Mathematics and Mechanics, 1985, 6(1): 9-23.
Wu Wang-yi, Richard Skalak. The Stokes Flow from Half-Space to Semi-Infinite Circular Cylinder[J]. Applied Mathematics and Mechanics, 1985, 6(1): 9-23.
Citation:
Wu Wang-yi, Richard Skalak. The Stokes Flow from Half-Space to Semi-Infinite Circular Cylinder[J]. Applied Mathematics and Mechanics, 1985, 6(1): 9-23.
The infinite-series solutions for the creeping motion of a viscous imcomperssible fluid from half-space to semi-infinite circular cylinder are presented. The results show that inside the cylinder beyond a distance equal to 0.5 times the radius of tube from the pore opening, the deviation of the velocity profile from the Poiseuille one becomes equal to or less than 1%.The inlet length in this case is considerably shorter than Dagan's finite circular cylinder one. In the half-space outside the cylinder pore the region, strongly affected by the tube wzll, is restricted within a narrow limit no more than one radius of the tube from the orifice. Beyond this region the solutions match almost exactly the Sampson's one for a flow through an orifice of Zero thickness, The relationship between the pressure drop and the volumetric flow rate is also considered in this paper.
Dagan,Z.,S.Weinbaum and R.Pfeffer.An infinite-series solution for the creeping motion through an orifice of finite length.J.Fluid Mech.,115(1982).502-523.
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吴望一,R. Skalak,应用数学和力学,4, 6(1983), 743-756.
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Parmet,I.L.and E.Saibel,Axisymmetric creeping flow an orifice in a plane wall.Comm.Pure Appl.Math.18(1965),17.