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An investigation for influence of intense thermal convection events on wall turbulence in the near-neutral atmospheric surface layer

机译:近中立大气表面层壁湍流对绵延热对流事件影响的研究

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摘要

Based on the field observation data in the near-neutral atmospheric surface layer (ASL) at the Qingtu Lake Observation Array, a new experimental data processing of the second-order statistic distribution of the high Reynolds number wall turbulence was presented which considered the influence of the intense thermal convection events (ITCEs). Following the conventional data selection in the literature, i.e., vertical bar z/L vertical bar, it is known that the variation of the large- and/or the very-large-scale motions (LSMs and VLSMs) cannot be effectively performed only by this method, which motivates us to find other factors influencing these turbulent motions, e.g., the ITCEs. From the data analysis of the probability density distribution of vertical heat flux, it is found that although its mean value tends to zero, its variance is large rather than zero, which suggests to us some ITCEs exist in the natural motions, although it has less frequent occurrences. In order to characterize the effect of such ITCEs, an additional parameter psi for scaling the ratio of the buoyancy force to the viscous force is proposed in the data selection progress. The results show that the greater the vertical bar psi vertical bar, the greater the impact of the ITCEs on ASL wall turbulence. Furthermore, our investigation reveals that the ITCEs may be one of the reasons why the VLSMs exhibit the Top-Down mechanism. Published under license by AIP Publishing.
机译:基于近中立大气表面层(ASL)的现场观测数据在青潭湖观察阵列中,提出了一种新的高雷诺数壁湍流的二阶统计分布的新实验数据处理,这考虑了影响的影响激烈的热对流事件(ITCE)。在文献中的传统数据选择之后,即垂直条Z / L垂直杆,众所周知的是,只有通过的情况下不能有效地执行大和/或非常大的动作(LSM和VLSMS)的变化这种方法激励我们找到影响这些湍流运动的其他因素,例如IOTCE。从垂直热通量的概率密度分布的数据分析中,发现其平均值趋于为零,但其方差大而不是零,这表明对我们存在的一些IOTICS存在于自然运动中,尽管它具有较少经常出现。为了表征这种IOTCE的效果,提出了一种用于将浮力力与粘性力的比率进行缩放的附加参数PSI。结果表明,垂直杆PSI垂直杆越大,IT对ASL壁湍流的影响越大。此外,我们的调查揭示了IORCE可能是VLSMS表现出自上而下机制的原因之一。通过AIP发布在许可证下发布。

著录项

  • 来源
    《Physics of fluids》 |2019年第10期|共15页
  • 作者

    Mei Ao; Zheng Xiaojing;

  • 作者单位

    Lanzhou Univ Key Lab Mech Disaster &

    Environm Westen China Minist Educ China Lanzhou 730000 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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