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Stability and dynamics of convection in dry salt lakes

机译:干盐湖中对流的稳定性与动态

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摘要

Dry lakes covered with a salt crust organised into beautifully patterned networks of narrow ridges are common in arid regions. Here, we consider the initial instability and the ultimate fate of buoyancy-driven convection that could lead to such patterns. Specifically, we look at convection in a deep porous medium with a constant throughflow boundary condition on a horizontal surface, which resembles the situation found below an evaporating salt lake. The system is scaled to have only one free parameter, the Rayleigh number, which characterises the relative driving force for convection. We then solve the resulting linear stability problem for the onset of convection. Further exploring the nonlinear regime of this model with pseudo-spectral numerical methods, we demonstrate how the growth of small downwelling plumes is itself unstable to coarsening, as the system develops into a dynamic steady state. In this mature state we show how the typical speeds and length scales of the convective plumes scale with forcing conditions, and the Rayleigh number. Interestingly, a robust length scale emerges for the pattern wavelength, which is largely independent of the driving parameters. Finally, we introduce a spatially inhomogeneous boundary condition-a modulated evaporation rate-to mimic any feedback between a growing salt crust and the evaporation over the dry salt lake. We show how this boundary condition can introduce phase locking of the downwelling plumes below sites of low evaporation, such as at the ridges of salt polygons.
机译:用盐外壳覆盖的干湖组织成美妙的狭窄脊,在干旱地区常见。在这里,我们考虑初始不稳定和浮力驱动的对流的最终命运,可能导致这种模式。具体地,我们在水平表面上具有恒定的通风边界条件的深层多孔介质中的对流,这类似于在蒸发盐湖下方发现的情况。该系统被缩放为仅具有一个自由参数,瑞利数,其表征了对流的相对驱动力。然后,我们解决了导致的对流发作的线性稳定性问题。进一步利用伪光谱数值方法探索该模型的非线性制度,我们展示了小贫困羽毛的生长本身在粗化上是如何不稳定的,因为系统发展成动态稳态。在这种成熟状态下,我们展示了对流羽毛的典型速度和长度尺度与强制条件和瑞利数。有趣的是,对于图案波长出现了鲁棒的长度尺度,其在很大程度上独立于驱动参数。最后,我们引入了空间不均匀的边界条件 - 调节蒸发速率 - 以模仿生长盐外壳和干盐湖上的蒸发之间的任何反馈。我们展示了这种边界条件如何引入低蒸发位点以下的沉船羽毛的阶段锁定,例如在盐多边形的脊。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1400-1400|共1页
  • 作者

    J. Lasser; M. Ernst; L. Goehring;

  • 作者单位

    Max- Planck Institute for Dynamics and Self- Organization Am Fassberg 17 Goettingen 37077 Germany;

    Max- Planck Institute for Dynamics and Self- Organization Am Fassberg 17 Goettingen 37077 Germany;

    Max- Planck Institute for Dynamics and Self- Organization Am Fassberg 17 Goettingen 37077 Germany;

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  • 正文语种 eng
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