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Surface energy fluxes during the total solar eclipse over Ny-Ålesund, Svalbard, on 20 March 2015

机译:2015年3月20日在斯瓦尔巴群岛Ny-Ålesund的日全食期间的地表能量通量

摘要

On 20 March 2015, a total solar eclipse occurred over Ny-Ålesund (78.9° N, 11.9° E), Svalbard, under ideal conditions with clear sky. The cycle of the radiation fluxes is comparable with other experiments during eclipses, with even the upward longwave radiation showing significant changes, with a delay to the shortwave radiation and a slowly linear increase after the totality. Also, under polar conditions, an increase of the wind velocity before and a decrease after the totality was found, which is an indicator of the generation of an “Eclipse cyclone”. This change of the wind direction generated a local wind system with a near-surface-layer katabatic flow. During the eclipse, a remarkably large sensible heat flux was observed. The turbulent fluxes were analysed using a wavelet technique with 1-minute time resolution, which is the ideal method for investigating these highly non-steady conditions. No influences on the boundary layer structure as measured with radiosondes were found, with the exception of a wind direction change during the eclipse cyclone below the shallow inversion layer.
机译:2015年3月20日,在理想的条件下,晴朗的天空,在斯瓦尔巴特群岛的Ny-Ålesund(78.9°N,11.9°E)发生了日全食。在日食期间,辐射通量的周期可与其他实验相媲美,甚至向上的长波辐射也显示出明显的变化,对短波辐射有延迟,并在总体之后呈缓慢的线性增长。同样,在极地条件下,发现总风速之前和之后的风速减小,这是“日食气旋”产生的指标。风向的这种变化产生了一个具有近表层化学弹状流的局部风力系统。在日食期间,观察到显着大的显热通量。使用具有1分钟时间分辨率的小波技术分析了湍流,这是研究这些高度不稳定条件的理想方法。没有发现对用无线电探空仪测量的边界层结构的影响,除了在浅层反演层以下的食气旋风期间的风向变化。

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