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  • PLASMA PHYSICS  (2)
  • FLUID MECHANICS AND HEAT TRANSFER  (1)
  • unknown  (1)
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  • 1
    Publication Date: 2019-05-25
    Keywords: unknown
    Type: NASA-CR-55531 , JPL-TR-32-672
    Format: text
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  • 2
    Publication Date: 2019-07-12
    Description: The time-dependent form of the classic, two-dimensional stagnation-point solution of the Navier-Stokes equations is considered. If the viscosity is zero, a class of solutions of the initial-value problem can be found in closed form using Lagrangian coordinates. These solutions exhibit singular behavior in finite time, because of the infinite domain and unbounded initial vorticity. Thus, the blow-up found by Stuart in three dimensions using the stagnation-point form, also occurs in two. The singularity vanishes under a discrete, finite-dimensional 'point vortex' approximation, but is recovered as the number of vortices tends to infinity. We find that a small positive viscosity does not arrest the breakdown, but does strongly alter its form. Similar results are summarized for certain Boussinesq stratified flows.
    Keywords: FLUID MECHANICS AND HEAT TRANSFER
    Type: Journal of Fluid Mechanics (ISSN 0022-1120); 203; 1-22
    Format: text
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  • 3
    Publication Date: 2019-07-12
    Description: Unsteady fast-dynamo action is obtained in a family of stretch-fold-shear maps applied to a spatially periodic magnetic field in three dimensions. Exponential growth of a mean field in the limit of vanishing diffusivity is demonstrated by a numerical method which alternates instantaneous deformations with molecular diffusion over a finite time interval. Analysis indicates that the dynamo is a coherent feature of the large scales, essentially independent of the cascade of structure to small scales.
    Keywords: PLASMA PHYSICS
    Type: Physical Review Letters (ISSN 0031-9007); 59; 1573-157
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  • 4
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    Unknown
    In:  Other Sources
    Publication Date: 2019-07-12
    Description: The evolution of a magnetic field in a chaotic web is studied. The model flow possessing the web is closely related to the nearly integrable ABC flow with A = B and C much less than 1. The magnetic diffusivity is taken to be zero and the field is followed using the Cauchy solution. It is found that the flow folds the magnetic field constructively, in the sense that the average magnetic field in a chaotic region grows exponentially in time. This is suggestive of fast dynamo action, although the effect of diffusion of the strong streamwise magnetic field remains to be assessed.
    Keywords: PLASMA PHYSICS
    Type: Physical Review Letters (ISSN 0031-9007); 65; 2133-213
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