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Showing papers on "Fluid parcel published in 1984"



Book
01 Jan 1984
TL;DR: In this article, the authors present a free e-book download service for Free Surface Fluid Flows, called Pressure Methods For The Numerical Solution of Free Surface Fluids.
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33 citations



Journal ArticleDOI
TL;DR: In this paper, the effect of suction and flow parameters on elasto-viscous liquid flow was analyzed and it was found that at a fixed time the fluid velocity and skin friction at any point decrease with the increase in suction, fluid elastic parameters.
Abstract: The flow problem of an elasto-viscous liquid (Walter-B type) due to impulsively accelerated motion of an infinite porous plate is considered. The effect of suction and flow parameters is analysed. It is found that at a fixed time the fluid velocity and skin friction at any point decrease with the increase in suction and fluid elastic parameters.

7 citations


Journal ArticleDOI
TL;DR: In this paper, the steady forced flow of an incompressible micropolar fluid against a rotating disc is considered and the equations of motion are solved numerically using the Gauss-Seidel iterative procedure and the Simpson's rule.

5 citations


Journal ArticleDOI
TL;DR: By employing a nonholonomic description of the governing equations, the complex lamellar motion of a viscous, incompressible and perfectly conducting dusty fluid is discussed, and some results of physical importance are derived as mentioned in this paper.
Abstract: By employing a nonholonomic description of the governing equations, the complex lamellar motion of a viscous, incompressible and perfectly conducting dusty fluid is discussed, and some results of physical importance are derived.

5 citations


Journal ArticleDOI
TL;DR: In this paper, the particle solution of the symmetric impact of two compressible fluid stream is derived, and the distribution of fluid properties along the plane of symmetry and the shape of free surface streamlines are determined by transformation back to the physical plane.
Abstract: The particle solution of the problem of the symmetric impact of two compressible fluid stream is derived. The plane two-dimensional flow is assumed to be steady, and the inviscid compressible fluid is of the Chaplygin (tangent gas) type. The equations governing this flow are transformed to the hodograph plane where an exact, closed-form solution for the stream function is obtained. The distribution of fluid properties along the plane of symmetry and the shape of free surface streamlines are determined by transformation back to the physical plane. The problem of a compressible fluid jet penetrating an infinite target of similar material is also solved by considering a limiting case of this solution. Differences between compressible and incompressible flows of the type considered are illustrated.

3 citations


Journal ArticleDOI
TL;DR: In this paper, the Navier-Stokes (N-S) equations are used to study flow past an arbitrary body on whose surface the tangential or normal velocity is under control.

2 citations



Book ChapterDOI
01 Jan 1984
TL;DR: Fluid statics is concerned with fluids in which the center of mass of each fluid particle has zero velocity and zero acceleration and the chapter describes viscosity also known as unstable fluid motion.
Abstract: Publisher Summary A fluid is a substance that cannot support a shearing stress. This characteristic gives fluids the ability to flow or change shapes. Both gases and liquids are fluids. Fluid mechanics is concerned with the behavior of fluids at the macroscopic level—the level at which measurements are made with pressure gauges, thermometers, and flow meters. Fluid mechanics is the analysis of the behavior of fluids. The description of fluid motion relies on Newton's laws of motion that is formulated in terms of measurable properties of the fluid, such as density, pressure, and flow velocity. A fluid has weight and, therefore, exerts a pressure on submerged objects. A fluid in motion transports momentum and energy. This chapter describes fluid statics and also explains the buoyant force exerted by fluids called Archimedes' principle. Fluid statics is concerned with fluids in which the center of mass of each fluid particle has zero velocity and zero acceleration. The chapter describes viscosity also known as unstable fluid motion.