Nonequilibrium Continuous Transition in a Fast Rotating Turbulence
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arXiv
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| Format: | Preprint |
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2025
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| _version_ | 1866909455016263680 |
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| author | Lohani, Chandra Shekhar Nayak, Suraj Kumar Seshasayanan, Kannabiran Shukla, Vishwanath |
| author_facet | Lohani, Chandra Shekhar Nayak, Suraj Kumar Seshasayanan, Kannabiran Shukla, Vishwanath |
| contents | We study the saturation of three-dimensional unstable perturbations on a fast rotating turbulent flow using direct numerical simulations (DNSs). Under the effect of Kolmogorov forcing, a transition between states dominated by coherent two-dimensional modes to states with three-dimensional variations (quasi-two-dimensional) is observed as we change the global rotation rate. We find this akin to a critical phenomenon, wherein the order parameter scales with the distance to the critical point raised to an exponent. The exponent itself deviates from the predicted mean field value. Also, the nature of the fluctuations of the order parameter near the critical point indicate the presence of on-off intermittency. The critical rotation rate at which the transition occurs exhibits a linear scaling behaviour with the forcing wave number. A reduced model based on linear stability analysis is used to find the linear threshold estimates; we find these to be in good agreement with the 3D nonlinear DNS results. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2501_07079 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Nonequilibrium Continuous Transition in a Fast Rotating Turbulence Lohani, Chandra Shekhar Nayak, Suraj Kumar Seshasayanan, Kannabiran Shukla, Vishwanath Fluid Dynamics Computational Physics We study the saturation of three-dimensional unstable perturbations on a fast rotating turbulent flow using direct numerical simulations (DNSs). Under the effect of Kolmogorov forcing, a transition between states dominated by coherent two-dimensional modes to states with three-dimensional variations (quasi-two-dimensional) is observed as we change the global rotation rate. We find this akin to a critical phenomenon, wherein the order parameter scales with the distance to the critical point raised to an exponent. The exponent itself deviates from the predicted mean field value. Also, the nature of the fluctuations of the order parameter near the critical point indicate the presence of on-off intermittency. The critical rotation rate at which the transition occurs exhibits a linear scaling behaviour with the forcing wave number. A reduced model based on linear stability analysis is used to find the linear threshold estimates; we find these to be in good agreement with the 3D nonlinear DNS results. |
| title | Nonequilibrium Continuous Transition in a Fast Rotating Turbulence |
| topic | Fluid Dynamics Computational Physics |
| url | https://arxiv.org/abs/2501.07079 |