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Summertime boundary layer winds over the Darwin–Hatherton glacial system, Antarctica: observed features and numerical analysis

机译:夏季南极达尔文-赫瑟顿冰川系统上的边界层风:观测特征和数值分析

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AbstractThree temporary Automatic Weather Stations measured summertime surface layer climate over the Darwin–Hatherton Glacial system. These data were used to test a Polar optimized Weather Research and Forecasting model (Polar-WRF) simulation for December as a case study. Observations show differences in hourly averaged solar and net all-wave radiation between white ice and blue ice areas (BIAs). Although the down-welling solar radiation is higher over the white ice region, the net all-wave energy is higher over the BIA. Derived albedo for each surface type confirms that the blue ice areas have lower albedo. Also, the hourly averaged temperatures are higher at lower elevation stations, creating a gradient towards the Ross Ice Shelf. Analysis shows that there is a diurnal oscillation in strength and intensity of the katabatic wind. The two lower stations register a distinct reversal of wind direction in the early afternoon due to intrusion of an anabatic circulation. Anabatic winds are not prevalent further up the Darwin Glacier. A high-resolution Polar-WRF simulation as a case study shows good agreement with observations. The December 2008 case study is characterized by a strong south-westerly katabatic wind over Hatherton, whereas the flow over Lower Darwin was diurnally reversing. Polar-WRF shows that the katabatic front advanced and retreated periodically between Hatherton and Lower Darwin.
机译:摘要三个临时的自动气象站测量了达尔文-赫瑟顿冰川系统的夏季表层气候。这些数据被用作案例研究的极地优化天气研究和预报模型(Polar-WRF)模拟。观测结果显示,白冰和蓝冰区域(BIA)在每小时平均太阳和净全波辐射方面存在差异。尽管在白冰地区的下层太阳辐射较高,但在BIA上的净全波能量较高。每种表面类型的反照率都证实了蓝色冰区的反照率较低。同样,在较低海拔的站点,每小时平均温度较高,从而形成了向罗斯冰架的梯度。分析表明,风的强度和强度存在昼夜振荡。由于杂散环流的侵入,两个较低的台站在午后出现了明显的风向逆转。在达尔文冰川上空没有盛行杂技风。作为案例研究的高分辨率Polar-WRF模拟显示与观察结果吻合良好。 2008年12月的案例研究的特征是,在希瑟顿上空发生西南偏风,而在下达尔文市上空的流量则在白天逆转。 Polar-WRF表明,合成化学阵线在Hatherton和Lower Darwin之间周期性地前进和后退。

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