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首页> 外文期刊>Boundary-layer Meteorology >Near-Surface Motion in the Nocturnal, Stable Boundary Layer Observed with Fibre-Optic Distributed Temperature Sensing
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Near-Surface Motion in the Nocturnal, Stable Boundary Layer Observed with Fibre-Optic Distributed Temperature Sensing

机译:光纤分布温度传感在夜间稳定边界层中的近表面运动

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摘要

The evolution of cold air layers near the surface was investigated for a night with stable conditions near the surface. Spatial air temperature observations at 276 co-located vertical profiles were made using high-resolution fibre-optic based distributed temperature sensing (DTS) in a quasi three-dimensional geometry oriented along a shallow depression in the landscape and analysed for patterns in near-surface flow. Temperature stratification was observed to be interrupted by transient temperature structures on the scale of metres for which the flow direction and velocity could be quantified. The high spatial resolution and large spatial domain of the DTS revealed temperature structures in a level of detail that exceeded the capability of traditional point observations of air temperature at low wind speeds. Further, composition techniques were applied to describe wave-like motions in the opposite direction of the mean flow, at intervals of approximately 200 s (5 mHz). The DTS technique delivered tomography on a scale of tens of metres. The spatial observations at high spatial (fractions of a metre) and temporal (sec) resolution provided new opportunities for detection and quantification of surface-flow features and description of complicated scale interactions. High-resolution DTS is therefore a valuable addition to experimental research on stable and weak-wind boundary layers near the surface.
机译:在地表附近条件稳定的夜晚,研究了地表附近冷空气层的演变。使用高分辨率的基于光纤的分布式温度感测(DTS)在沿景观的浅洼地定向的准三维几何形状中对276个并置垂直剖面进行空间气温观测,并分析了近地表中的模式流。观察到温度分层被瞬变温度结构打断,该结构以米为单位,可以量化流动方向和速度。 DTS的高空间分辨率和较大的空间域在细节上揭示了温度结构,这超出了传统的低风速空气温度点观测的能力。此外,应用合成技术来描述平均流量相反方向上的波状运动,间隔约为200 s(5 mHz)。 DTS技术可在数十米的范围内进行断层扫描。在高空间(一米的分数)和时间(秒)的分辨率下进行的空间观测为检测和量化表面流特征以及描述复杂的尺度相互作用提供了新的机会。因此,高分辨率DTS是对地表附近稳定和弱风边界层的实验研究的宝贵补充。

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