Bulk scaling in wall-bounded and homogeneous vertical natural convection
Chong Shen Ng, Andrew Ooi, Detlef Lohse, Daniel Chung

TL;DR
This study demonstrates that bulk-dominated vertical natural convection exhibits a 1/2 power-law scaling of Nusselt and Reynolds numbers with Rayleigh number, similar to homogeneous RBC, indicating a universal bulk behavior.
Contribution
It extends the understanding of scaling laws to vertical natural convection without walls, showing bulk behavior aligns with homogeneous RBC predictions.
Findings
Bulk Nusselt and Reynolds numbers follow a 1/2 power-law scaling with Rayleigh number.
Homogeneous vertical natural convection exhibits unsteady dynamics at low to moderate Rayleigh numbers.
The 1/2 scaling law may be observable at lower Rayleigh numbers when using bulk flow quantities.
Abstract
Previous numerical studies on homogeneous Rayleigh-B\'enard convection, which is Rayleigh-B\'enard convection (RBC) without walls, and therefore without boundary layers, have revealed a scaling regime that is consistent with theoretical predictions of bulk-dominated thermal convection. In this so-called asymptotic regime, previous studies have predicted that the Nusselt number () and the Reynolds number () vary with the Rayleigh number () according to and at small Prandtl number (). In this study, we consider a flow that is similar to RBC but with the direction of temperature gradient perpendicular to gravity instead of parallel; we refer to this configuration as vertical natural convection (VC). Since the direction of the temperature gradient is different in VC, there is no exact relation for the average kinetic dissipation rate,…
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