For Rayleigh-Bénard convection of a fluid with Prandtl number sigma = 1.4, we report experimental and theoretical results on a pattern selection mechanism for cell-filling, giant, rotating spirals. We show that the pattern selection in a certain limit can be explained quantitatively by a phase-diffusion mechanism. This mechanism for pattern selection is very different from that for spirals in excitable media
We report on the influence of a quasi-one-dimensional periodic forcing on the pattern selection proc...
Sharp transitions between potentially different turbulent states are unexpected because one might th...
We develop two measures to characterize the geometry of patterns exhibited by the state of spiral de...
For Rayleigh-Bénard convection of a fluid with Prandtl number sigmaap1, we report experimental resul...
A theory of the novel spiral chaos state recently observed in Rayleigh-Bénard convection is proposed...
In this thesis we numerically study two unique pattern forming processes observed in Rayleigh-Bénard...
We report experiments on convection patterns in a cylindrical cell with a large aspect ratio. The fl...
Pattern formation in a rotating Rayleigh-Bénard convec-tion configuration is investigated for moder...
Thermal convection in a moderately thin spherical fluid layer in the presence of spherically symmetr...
We report experimental observations of the core dynamics of multi-armed, rotating spirals in Rayleig...
Large-scale patterns, which are well-known from the spiral defect chaos regime of thermal convection...
Spiral pattern is a typical pattern observed in dissipative systems. It is well known' that the...
Abstract. We develop two measures to characterize the geometry of patterns exhib-ited by the state o...
Spiral patterns have been observed experimentally, numerically, and theoretically in a variety of sy...
We report on the influence of a quasi-one-dimensional periodic forcing on the pattern selection proc...
We report on the influence of a quasi-one-dimensional periodic forcing on the pattern selection proc...
Sharp transitions between potentially different turbulent states are unexpected because one might th...
We develop two measures to characterize the geometry of patterns exhibited by the state of spiral de...
For Rayleigh-Bénard convection of a fluid with Prandtl number sigmaap1, we report experimental resul...
A theory of the novel spiral chaos state recently observed in Rayleigh-Bénard convection is proposed...
In this thesis we numerically study two unique pattern forming processes observed in Rayleigh-Bénard...
We report experiments on convection patterns in a cylindrical cell with a large aspect ratio. The fl...
Pattern formation in a rotating Rayleigh-Bénard convec-tion configuration is investigated for moder...
Thermal convection in a moderately thin spherical fluid layer in the presence of spherically symmetr...
We report experimental observations of the core dynamics of multi-armed, rotating spirals in Rayleig...
Large-scale patterns, which are well-known from the spiral defect chaos regime of thermal convection...
Spiral pattern is a typical pattern observed in dissipative systems. It is well known' that the...
Abstract. We develop two measures to characterize the geometry of patterns exhib-ited by the state o...
Spiral patterns have been observed experimentally, numerically, and theoretically in a variety of sy...
We report on the influence of a quasi-one-dimensional periodic forcing on the pattern selection proc...
We report on the influence of a quasi-one-dimensional periodic forcing on the pattern selection proc...
Sharp transitions between potentially different turbulent states are unexpected because one might th...
We develop two measures to characterize the geometry of patterns exhibited by the state of spiral de...