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Optimum time step and remerging Feigenbaum trees in a one- dimensional boundary-layer model

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Authors

  • G. Gross

Details

Original languageEnglish
Pages (from-to)271-273
Number of pages3
JournalContributions to Atmospheric Physics
Volume68
Issue number3
Publication statusPublished - 1995

Abstract

For a simple boundary layer model, the behaviour towards a steady state solution is investigated. For specific time steps a bifurcation cascade occurs during the first 1000 iterations. Furthermore, a time step criterion is introduced which allows to consider nonlinear effects. -Author

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Cite this

Optimum time step and remerging Feigenbaum trees in a one- dimensional boundary-layer model. / Gross, G.
In: Contributions to Atmospheric Physics, Vol. 68, No. 3, 1995, p. 271-273.

Research output: Contribution to journalArticleResearchpeer review

Gross, G 1995, 'Optimum time step and remerging Feigenbaum trees in a one- dimensional boundary-layer model', Contributions to Atmospheric Physics, vol. 68, no. 3, pp. 271-273.
Gross, G. (1995). Optimum time step and remerging Feigenbaum trees in a one- dimensional boundary-layer model. Contributions to Atmospheric Physics, 68(3), 271-273.
Gross G. Optimum time step and remerging Feigenbaum trees in a one- dimensional boundary-layer model. Contributions to Atmospheric Physics. 1995;68(3):271-273.
Gross, G. / Optimum time step and remerging Feigenbaum trees in a one- dimensional boundary-layer model. In: Contributions to Atmospheric Physics. 1995 ; Vol. 68, No. 3. pp. 271-273.
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