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Gravitational thermal flown of liquid metals in 3D variable cross-section containers: Transition from low-dimensional to high-dimensional chaos

机译:在3D可变横截面容器中的重力热飞行液体金属:从低维到高维混乱的过渡

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摘要

This study extends the numerical results presented in author's past work N. Lappa and H. Ferialdi, Phys. Fluids 29(6), 064106 (2017)] about the typical instabilities of thermogravitational convection (the so-called Hadley flow) in containers with inclined (converging or diverging) walls. The flow is now allowed to develop along the third dimension (z). In a region of the space of parameters where the two-dimensional solutions were found to be relatively regular in time and with a simple structure in space (supporting transverse waves propagating either in the downstream or in the upstream direction), the 3D flow exhibits either waves traveling along the spanwise direction or spatially disordered and chaotic patterns. In order to identify the related mechanisms, we analyze the competition between hydrodynamic and hydrothermal (Oscillatory Longitudinal Roll) modes of convection for different conditions. A peculiar strategy of analysis is implemented, which, on the one hand, exploits the typical properties of systems developing coexisting branches of solutions ("multiple" states) and their sensitivity to a variation of the initial conditions and, on the other hand, can force such systems to select a specific category of disturbances (by enabling or disabling the related "physical" mechanisms). It is shown that hydrodynamic modes can produce early transition to chaos. The dimensionality of such states is investigated through evaluation of the "fractal" (correlation) dimension on the basis of the algorithm by Grassberger and Procaccia. When low-dimensional chaos is taken over by high-dimensional chaos, the flow develops a recognisable interval of scales where turbulence obeys the typical laws of the so-called "inertial range" and produces small-scale features in agreement with available Kolmogorov estimates. Published by AIP Publishing.
机译:本研究扩展了作者过去工作中提出的数值结果N. Lappa和H.Ferialdi,Phy。流体29(6),064106(2017)]关于具有倾斜(会聚或发散)壁的容器中的热倾角对流(所谓HADLEY流量)的典型稳定性。现在允许该流动沿着第三尺寸(Z)开发。在发现二维解决方案的参数空间的区域中,在时间相对常规,并且在空间中的简单结构(在下游或上游或上游方向传播的横波或上游方向上传播),3D流也呈现沿着枝条方向或空间紊乱和混沌模式行驶的波浪。为了识别相关机制,我们分析了不同条件的流体动力学和水热(振荡纵向辊)对流模式之间的竞争。实施了一种特殊的分析策略,一方面,这一方面利用制定解决方案共存分支的系统的典型特性(“多个”状态)及其对初始条件的变化的敏感性,另一方面,可以强制这样的系统选择特定的干扰类别(通过使能或禁用相关的“物理”机制)。结果表明,流体动力学模式可以产生早期过渡到混沌。通过基于Grassberger和Procaccia的算法评估“分形”维度的“分形”维度来研究这些国家的维度。当通过高维混沌接管低维混沌时,该流动的尺度开发了可识别的尺度间隔,其中湍流遵循所谓的“惯性范围”的典型规律,并产生与可用的Kolmogorov估计协议的小规模特征。通过AIP发布发布。

著录项

  • 来源
    《Chaos》 |2018年第2期|共21页
  • 作者单位

    Univ Strathclyde Dept Mech &

    Aerosp Engn James Weir Bldg 75 Montrose St Glasgow G1 1XJ Lanark Scotland;

    Univ Strathclyde Dept Mech &

    Aerosp Engn James Weir Bldg 75 Montrose St Glasgow G1 1XJ Lanark Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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