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Observations of near surface wind speed, temperature and radiative budget at Dome C, Antarctic Plateau during 2005

机译:2005年南极高原Dome C的近地表风速,温度和辐射收支的观测

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Abstract The annual and diurnal behaviours of near surface wind speed, temperature, and the radiative budget at Concordia Station (Dome C) in different seasons are shown. The wind speed was lowest in summer when a daily cycle was also observed. The largest mean values were concurrent with boundary layer growth in the afternoon. In winter and spring the wind speed reached the highest mean values. Perturbations in the wind flow were due to warming events which occurred periodically at Dome C. The lowest temperatures were in April and at the end of August. The coreless winter behaviour was perturbed by warming events which in many cases produced an increase in temperature of c. 20°C. The average temperature profiles show permanent thermal inversion, with the exception of a few hours in the afternoons during the summer. The strongest ground-based thermal inversions were observed in the polar winter. The largest potential temperature gradients were limited to a 30–40 m deep layer close to the surface. The net radiation was negative almost all the time with the exception of the period from mid-December to mid-January.
机译:摘要显示了不同季节Concordia站(Come)近地表风速,温度和辐射收支的年度和日变化。在夏季,还观察到每日周期,风速最低。最大平均值与下午边界层生长同时发生。在冬季和春季,风速达到最高平均值。风流中的扰动是由于Dome C定期发生的变暖事件造成的。最低温度是4月和8月底。无核冬季行为受到变暖事件的干扰,在许多情况下,变暖导致摄氏温度升高。 20℃。平均温度曲线显示永久性热逆转,夏季下午只有几个小时。在极地冬季观测到最强的地面热反演。最大的潜在温度梯度仅限于靠近表面的30–40 m深层。除12月中旬至1月中旬期间外,几乎所有时间的净辐射均为负值。

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