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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Contrasts between the summertime surface energy balance and boundary layer structure at Dome C and Halley stations, Antarctica
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Contrasts between the summertime surface energy balance and boundary layer structure at Dome C and Halley stations, Antarctica

机译:夏季表面能之间的对比平衡和边界层结构穹顶C和哈雷电台,南极洲

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摘要

The Antarctic research stations of Dome C and Halley lie at similar latitudes (~75°S) and are thus subject to similar diurnal variation of solar radiation at the top of the atmosphere. However, the response of the atmospheric boundary layer to this diurnally varying forcing differs greatly at the two stations. At Dome C during summer there is a strong diurnal cycle in near-surface temperature and wind speed, and a shallow (~350 m) convective boundary layer is observed to grow in response to diurnal heating. At Halley, diurnal variations in temperature and wind speed are smaller than those at Dome C, and there is no clear diurnal variability in boundary layer depth. Analysis of the summertime surface energy budget for both stations indicates that the main reason for the different diurnal variability at the two stations is the greater partitioning of available energy into latent heat flux at the warmer Halley station. We argue that the diurnally varying convective boundary layer observed at Dome C will not be typical of the whole of the East Antarctic plateau.
机译:南极研究站的圆顶C和哈雷躺在类似的纬度(~ 75°S)和因此受到类似的昼夜变化太阳辐射的大气。然而,大气边界的反应这个每日不同迫使不同层极大地在两个站点。夏天有一种强烈的昼夜循环近地表温度和风速,浅对流边界层(350 ~)观察到生长在应对日供暖。在哈雷,昼夜温度的变化风速小于那些圆顶C,和没有明显的昼夜变化边界层深度。电台表明能源预算不同昼夜的主要原因两个站是更大的可变性分区可用的能源转化为潜热在温暖的哈雷车站通量。在白天不同对流边界层观察到圆顶C不会的典型整个南极东部高原。

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