论文标题
热对流系统中的图案形成:时空热统计,新兴通量和局部平衡
Pattern Formation in Thermal Convective Systems: Spatio-temporal Thermal Statistics, Emergent Flux, and Local Equilibrium
论文作者
论文摘要
我们讨论两个单独的热对流系统中的时空模式形成。在第一个系统中,水热波(htw)是在环形通道中进行数字建模的。整个通道施加了温度差,这会在流体的自由表面上引起表面张力梯度,从而导致表面流向冷侧。流动模式沿着温度梯度轴向对称,内部循环对于较小的温度差。这种轴向对称的流(ASF)在给定的温度差阈值之外变得不稳定,随后出现了对称性的断裂流,即旋转振荡波或HTW。对于第二个系统,在非扰动的制度中对Rayleigh-Bénard对流(RBC)进行了实验研究。当液体薄膜加热时,粘度和浮力的竞争力会引起对流的不稳定性。这种对流不稳定性在流体膜的表面上产生了时空的非均匀温度分布。在这两个系统中都研究了表面温度统计数据,它们是“顺序”和“疾病”相分开的。尽管在两种情况下引起对流不稳定性的机制都不同,但我们发现了这些新兴结构中热分布的宏观性质的一致性。
We discuss spatio-temporal pattern formation in two separate thermal convective systems. In the first system, hydrothermal waves (HTW) are modeled numerically in an annular channel. A temperature difference is imposed across the channel, which induces a surface tension gradient on the free surface of the fluid, leading to a surface flow towards the cold side. The flow pattern is axially symmetric along the temperature gradient with an internal circulation for a small temperature difference. This axially symmetric flow (ASF) becomes unstable beyond a given temperature difference threshold, and subsequently, symmetry-breaking flow, i.e., rotational oscillating waves or HTW, appears. For the second system, Rayleigh-Bénard convection (RBC) is experimentally studied in the non-turbulent regime. When a thin film of liquid is heated, the competing forces of viscosity and buoyancy give rise to convective instabilities. This convective instability creates a spatio-temporal non-uniform temperature distribution on the surface of the fluid film. The surface temperature statistics are studied in both these systems as `order' and `disorder' phase separates. Although the mechanisms that give rise to convective instabilities are different in both cases, we find an agreement on the macroscopic nature of the thermal distributions in these emergent structures.