论文标题

罗宾边界条件对旋转球形壳中热对流的影响

The Effects of Robin Boundary Condition on Thermal Convection in a Rotating Spherical Shell

论文作者

Clarté, Thibaut, Schaeffer, Nathanaël, Labrosse, Stéphane, Vidal, Jérémie

论文摘要

球形外壳中的对流被广泛用于模拟行星和恒星的流体层。在此类模型中的热边界条件的选择并不总是直接的。为了了解此选择的含义,我们报告了热边界条件对热对流的影响,在不稳定的发作,完全开发的运输特性和流动结构方面。我们使用BousSinesQ近似,并在顶部施加了Robin边界条件。这会强制执行温度异常及其径向导数,以与比例因子$β$线性结合。使用流体层的高度H,我们引入了非二维生物数BI* = $β$ H。变化的bi*使我们可以从BI* = +$ \ infty $的固定温度过渡到固定bi* = 0的热通量。壳的底部边界保持等温线。我们发现,在非旋转情况下,对流的发作仅受BI*的影响。考虑到有效的瑞利数字和广义的努塞尔数,我们表明Nusselt和P {é} Clet数字遵循标准的通用缩放定律,在所有情况下都遵循标准的通用标度定律。但是,即使全局传热和动能是相同的,大型流量结构仍使边界条件的特征保持边界条件的标志性更大的尺寸。最后,出于所有实际目的,当BI* <0.03和Bi*> 30的固定温度时,罗宾条件可以安全地被固定通量替换。

Convection in a spherical shell is widely used to model fluid layers of planets and stars. The choice of thermal boundary conditions in such models is not always straightforward. To understand the implications of this choice, we report on the effects of the thermal boundary condition on thermal convection, in terms of instability onset, fully developed transport properties and flow structure. We use the Boussinesq approximation, and impose a Robin boundary condition at the top. This enforces the temperature anomaly and its radial derivative to be linearly coupled with a proportionality factor $β$. Using the height H of the fluid layer, we introduce the non-dimensional Biot number Bi* = $β$H. Varying Bi* allows us to transition from fixed temperature for Bi* = +$\infty$, to fixed thermal flux for Bi* = 0. The bottom boundary of the shell is kept isothermal. We find that the onset of convection is only affected by Bi* in the non-rotating case. Far from onset, considering an effective Rayleigh number and a generalized Nusselt number, we show that the Nusselt and P{é}clet numbers follow standard universal scaling laws, independent of Bi* in all cases considered. However, the large-scale flow structure keeps the signature of the boundary condition with more vigorous large scales for smaller Bi* , even though the global heat transfer and kinetic energy are the same. Finally, for all practical purposes, the Robin condition can be safely replaced by a fixed flux when Bi* < 0.03 and by a fixed temperature for Bi* > 30.

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