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Journal ArticleDOI

A general classification of three-dimensional flow fields

Min S Chong, +2 more
- 01 May 1990 - 
- Vol. 2, Iss: 5, pp 765-777
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TLDR
In this paper, the geometry of solution trajectories for three first-order coupled linear differential equations can be related and classified using three matrix invariants for elementary three-dimensional flow patterns defined by instantaneous streamlines for flow at and away from no slip boundaries for both compressible and incompressible flow.
Abstract
The geometry of solution trajectories for three first‐order coupled linear differential equations can be related and classified using three matrix invariants. This provides a generalized approach to the classification of elementary three‐dimensional flow patterns defined by instantaneous streamlines for flow at and away from no‐slip boundaries for both compressible and incompressible flow. Although the attention of this paper is on the velocity field and its associated deformation tensor, the results are valid for any smooth three‐dimensional vector field. For example, there may be situations where it is appropriate to work in terms of the vorticity field or pressure gradient field. In any case, it is expected that the results presented here will be of use in the interpretation of complex flow field data.

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Citations
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Journal ArticleDOI

On velocity gradient dynamics and turbulent structure

TL;DR: In this paper, the role of structure in velocity gradient tensor statistics is examined for all local (incompressible) flow topologies characterisable by turbulent structures through the footprints they leave in conditional averages of the field, pertinent to non-local strain production.
Proceedings ArticleDOI

Vortex identification—applications in aerodynamics: a case study

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Skin friction pattern analysis using near-wall PIV

TL;DR: In this paper, a near-wall PIV technique was introduced to analyze skin friction patterns around a wall-mounted cube, and the closest 2D PIV measurements were performed within 0.5 mm of plane surfaces (with a 1 mm thick laser sheet).
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Fast Texture-based Algorithms for Vector Field Visualization

TL;DR: Line integral convolution of a 2D Hamiltonian system and its applications in scientific visualization.
Journal ArticleDOI

On the non-local geometry of turbulence

TL;DR: In this article, a multi-scale methodology for the study of the non-local geometry of eddy structures in turbulence is developed, which consists of three main steps: extraction, characterization and classification of structures.
References
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Book

Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields

TL;DR: In this article, the authors introduce differential equations and dynamical systems, including hyperbolic sets, Sympolic Dynamics, and Strange Attractors, and global bifurcations.

A Reflection on Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields

TL;DR: In this paper, the authors introduce differential equations and dynamical systems, including hyperbolic sets, Sympolic Dynamics, and Strange Attractors, and global bifurcations.
Book

Differential Equations, Dynamical Systems, and Linear Algebra

TL;DR: In this article, the structure theory of linear operators on finite-dimensional vector spaces has been studied and a self-contained treatment of that subject is given, along with a discussion of the relations between dynamical systems and certain fields outside pure mathematics.
Journal ArticleDOI

Direct simulation of a turbulent boundary layer up to R sub theta = 1410

TL;DR: In this paper, the turbulent boundary layer on a flat plate, with zero pressure gradient, is simulated numerically at four stations between R sub theta = 225 and R sub tta = 1410.
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