We investigate the fully nonlinear model for convection in a Darcy porous material where the diffusion is of anomalous type as recently proposed by Barletta. The fully nonlinear model is analysed but we allow for variable gravity or penetrative convection effects which result in spatially dependent coefficients. This spatial dependence usually requires numerical solution even in the linearized case. In this work, we demonstrate that regardless of the size of the Rayleigh number, the perturbation solution will decay exponentially in time for the superdiffusion case. In addition, we establish a similar result for convection in a bidisperse porous medium where both macro- and microporosity effects are present. Moreover, we demonstrate a similar result for thermosolutal convection.

Straughan, B., Barletta, A. (2024). Asymptotic behaviour for convection with anomalous diffusion. CONTINUUM MECHANICS AND THERMODYNAMICS, 36(4), 737-743 [10.1007/s00161-024-01291-7].

Asymptotic behaviour for convection with anomalous diffusion

Barletta, Antonio
2024

Abstract

We investigate the fully nonlinear model for convection in a Darcy porous material where the diffusion is of anomalous type as recently proposed by Barletta. The fully nonlinear model is analysed but we allow for variable gravity or penetrative convection effects which result in spatially dependent coefficients. This spatial dependence usually requires numerical solution even in the linearized case. In this work, we demonstrate that regardless of the size of the Rayleigh number, the perturbation solution will decay exponentially in time for the superdiffusion case. In addition, we establish a similar result for convection in a bidisperse porous medium where both macro- and microporosity effects are present. Moreover, we demonstrate a similar result for thermosolutal convection.
2024
Straughan, B., Barletta, A. (2024). Asymptotic behaviour for convection with anomalous diffusion. CONTINUUM MECHANICS AND THERMODYNAMICS, 36(4), 737-743 [10.1007/s00161-024-01291-7].
Straughan, Brian; Barletta, Antonio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/978320
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