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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Turbulence kinetic energy budget during the afternoon transition a?? Part??1: Observed surface TKE budget and boundary layer description for 10 intensive observation period days
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Turbulence kinetic energy budget during the afternoon transition a?? Part??1: Observed surface TKE budget and boundary layer description for 10 intensive observation period days

机译:下午过渡期间的湍流动能预算a ??第一部分:10个密集观测期天的观测地面TKE预算和边界层描述

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pstrongAbstract./strong The decay of turbulence kinetic energy (TKE) and its budget in the afternoon period from midday until zero-buoyancy flux at the surface is studied in a??two-part paper by means of measurements from the Boundary Layer Late Afternoon and Sunset Turbulence (BLLAST) field campaign for 10 intensive observation period days. Here, in Part??1, near-surface measurements from a??small tower are used to estimate a??TKE budget. The overall boundary layer characteristics and mesoscale situation at the site are also described based upon taller tower measurements, radiosoundings and remote sensing instrumentation. Analysis of the TKE budget during the afternoon transition reveals a??variety of different surface layer dynamics in terms of TKE and TKE decay. This is largely attributed to variations in the 8span class="thinspace"/spanm wind speed, which is responsible for different amounts of near-surface shear production on different afternoons and variations within some of the afternoon periods. The partitioning of near-surface production into local dissipation and transport in neutral and unstably stratified conditions was investigated. Although variations exist both between and within afternoons, as a??rule of thumb, our results suggest that about 50span class="thinspace"/span% of the near-surface production of TKE is compensated for by local dissipation near the surface, leaving about 50span class="thinspace"/span% available for transport. This result indicates that it is important to also consider TKE transport as a??factor influencing the near-surface TKE decay rate, which in many earlier studies has mainly been linked with the production terms of TKE by buoyancy and wind shear. We also conclude that the TKE tendency is smaller than the other budget terms, indicating a??quasi-stationary evolution of TKE in the afternoon transition. Even though the TKE tendency was observed to be small, a??strong correlation to mean buoyancy production of a??0.69 was found for the afternoon period. For comparison with previous results, the TKE budget terms are normalized with friction velocity and measurement height and discussed in the framework of Monina??Obukhov similarity theory. Empirically fitted expressions are presented. Alternatively, we also suggest a??non-local parametrization of dissipation using a??TKEa??length scale model which takes into account the boundary layer depth in addition to distance above the ground. The non-local formulation is shown to give a??better description of dissipation compared to a??local parametrization./p.
机译:> >摘要。在两部分的论文中,研究了从中午到表面浮力为零的下午期间湍流动能(TKE)的衰减及其预算。边界层下午和日落湍流(BLLAST)野外活动进行的10个密集观察期天的测量结果。在这里,在第1部分中,来自一个小塔的近地表测量被用来估计一个TKE预算。还根据更高的塔楼测量值,无线电探空仪和遥感仪器,描述了现场的总体边界层特征和中尺度状况。对下午过渡期TKE预算的分析揭示了根据TKE和TKE衰减的不同表层动力学的各种变化。这主要归因于8 class =“ thinspace”> m风速的变化,这是导致不同下午的不同数量的近地表剪切产生的原因以及某些下午时段的变化。研究了近地表生产在中性和不稳定分层条件下的局部耗散和运输分配。尽管在下午之间和下午之间都存在差异,但根据经验法则,我们的结果表明,大约50%的TKE近地表产气被局部耗散所补偿。在地表附近,剩下约50 class =“ thinspace”> %可供运输。该结果表明,重要的是,还应考虑将TKE输送作为影响近地表TKE衰减率的因素,在许多早期研究中,这主要与浮力和风切变与TKE的生产条件有关。我们还得出结论,TKE趋势比其他预算条款要小,这表明TKE在下午的过渡过程中有一个准平稳的演变。即使观察到TKE趋势很小,下午的平均浮力仍为a?0.69。为了与以前的结果进行比较,用摩擦速度和测量高度对TKE预算项进行了归一化,并在Monina?Obukhov相似性理论的框架中进行了讨论。提供了经验拟合的表达式。另外,我们还建议使用ΔTKEaΔ长度尺度模型进行耗散的Δε非局部参数化,该模型考虑了边界层深度以及距地面的距离。与“局部参数化”相比,非局部公式可以更好地描述耗散。

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