论文标题

三维水平扩展的湍流对流中的动能和热方差的反向级联

Inverse cascades of kinetic energy and thermal variance in three-dimensional horizontally extended turbulent convection

论文作者

Vieweg, Philipp P., Scheel, Janet D., Stepanov, Rodion, Schumacher, Jörg

论文摘要

发现光谱空间中垂直均匀模式子集中的动能和热方差的倒数级联反应会导致一对对流的超级粒子的慢凝聚,这些对流的超级颗粒最终填充整个水平的,三维的,三维的,湍流的雷利 - 贝尔 - 贝纳德对流层,当散热器在顶部和底部处方处方。沿垂直轴层的额外弱旋转使该聚集的比例小于横向域延伸,并停止了逆级联反向级联的热方差。动能的反级联反向仍然完整,即使在温度和速度的均方根值达到统计稳态状态的时间。这种动能反向级联体维持水平扩展的对流模式,这些模式在温度场中最可见。聚合对流模式的所得特征长度取决于热驱动,并线性地取决于旋转强度。我们的研究表明,在三维对流流中,二维湍流案例以外的反向能量级联反应的重要性,该流量受热羽流的多尺度能量注射,并由边界热通量驱动,通常存在于天然地理和天体物理系统(例如solar对流)中。

Inverse cascades of kinetic energy and thermal variance in the subset of vertically homogeneous modes in spectral space are found to cause a slow aggregation to a pair of convective supergranules that eventually fill the whole horizontally extended, three-dimensional, turbulent Rayleigh-Bénard convection layer when a heat flux is prescribed at the top and bottom. An additional weak rotation of the layer around the vertical axis stops this aggregation at a scale that is smaller than the lateral domain extension and ceases the inverse cascade for the thermal variance. The inverse cascade for the kinetic energy remains intact, even for times at which the root mean square values of temperature and velocity have reached the statistically steady state. This kinetic energy inverse cascade sustains the horizontally extended convection patterns which are best visible in the temperature field. The resulting characteristic length of the aggregated convection patterns depends on the thermal driving and linearly on the strength of rotation. Our study demonstrates the importance of inverse energy cascades beyond the two-dimensional turbulence case in a three-dimensional convection flow that is subject to a multi-scale energy injection by thermal plumes and driven by boundary heat fluxes as typically present in natural geo- and astrophysical systems, such as solar convection.

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