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Representing the Heat-to-Moisture Transport Efficiency in Stable Conditions: An Extension of Two Different Approaches

机译:代表稳定条件下的热水输送效率:两种不同方法的延伸

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摘要

Using eddy-covariance turbulence measurements over a Tibetan glacier, we present a description of scalar turbulence characteristics in the stable boundary layer. Interesting behaviours are demonstrated in terms of temperature-humidity de-correlation and dissimilarity. That is, a lack of perfect correlation occurs between the two scalars (i.e., correlation coefficients <1 in magnitude); overall, sensible heat is more efficiently transported than water vapour over snow and ice surfaces. Such behaviours provide evidence of departures from the idealized expectation of Monin-Obukhov similarity theory-all scalars assume a perfect level of linear correlation and an equal efficiency level of vertical transport. Results presented herein are noteworthy in that observations over uniform glaciated surfaces involve negligible effects of either a canopy-induced roughness sublayer or heterogeneity in the temperature-humidity source/sink distributions. Moreover, we address two different approaches to representing the heat-to-moisture transport efficiency in stable conditions. A new approach is extended through application of the quadrant analysis technique, thereby representing it as a function of atmospheric stability. Caution is further advised in the use of this approach, when temperature-humidity turbulence becomes markedly de-correlated. A second approach, as previously applied for estimating forest evaporation fluxes in unstable conditions, is extended to a stable boundary layer over snow and ice surfaces.
机译:在藏冰川上使用涡旋协方差湍流测量,我们展示了稳定边界层中的标量湍流特性的描述。在温度湿度去相关性和不相似性方面证明了有趣的行为。也就是说,两个标量之间发生缺乏完美的相关性(即,相关系数<1的相关系数<1);总体而言,明智的热量比冰雪和冰表面上的水蒸气更有效地运输。这些行为提供了从Monin-Obukhov相似性理论的理想化期望的偏离的证据 - 所有标量都采用完美的线性相关水平和垂直传输的平等效率。这里提出的结果是值得注意的,因为在均匀冰川表面上的观察结果涉及在温度湿度源/沉积物分布中可以忽略的冠层诱导的粗糙度子层或异质性的效果。此外,我们解决了两种不同的方法,以在稳定的条件下代表热水输送效率。通过应用象限分析技术,扩展了一种新方法,从而将其代表其作为大气稳定性的函数。在使用这种方法时,进一步告知当温度湿度湍流明显断开时,进一步建议。如前所述用于在不稳定条件下估计森林蒸发通量的第二种方法,延伸到冰雪和冰表面的稳定边界层。

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  • 来源
    《Asia-Pacific journal of atmospheric sciences》 |2020年第4期|603-611|共9页
  • 作者单位

    State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing People's Republic of China;

    Ministry of Education Key Laboratory for Earth System Modeling Department of Earth System Science Tsinghua University Beijing People's Republic of China CAS Center for Excellence in Tibetan Plateau Earth Sciences Chinese Academy of Sciences Beijing People's Republic of China;

    CAS Center for Excellence in Tibetan Plateau Earth Sciences Chinese Academy of Sciences Beijing People's Republic of China Key Laboratory of Tibetan Environment Changes and Land Surface Processes Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing People's Republic of China;

    Chongqing Engineering Research Center for Remote Sensing Big Data Application School of Geographical Sciences Southwest University Chongqing People's Republic of China;

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing People's Republic of China;

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bowen ratio; Quadrant analysis technique; Scalar turbulence; Snow and ice; Stable boundary layer; Transport efficiency;

    机译:鲍文比例;象限分析技术;标量湍流;雪和冰;稳定的边界层;运输效率;

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