首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Climatology of katabatic winds in the McMurdo dry valleys, southern Victoria Land, Antarctica - art. no. D03114
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Climatology of katabatic winds in the McMurdo dry valleys, southern Victoria Land, Antarctica - art. no. D03114

机译:南极维多利亚州南部维多利亚州麦克默多干旱谷中的塔塔风的气候学-艺术。没有。 D03114

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摘要

Katabatic winds dramatically affect the climate of the McMurdo dry valleys, Antarctica. Winter wind events can increase local air temperatures by 30degreesC. The frequency of katabatic winds largely controls winter (June to August) temperatures, increasing 1degreesC per 1% increase in katabatic frequency, and it overwhelms the effect of topographic elevation (lapse rate). Summer katabatic winds are important, but their influence on summer temperature is less. The spatial distribution of katabatic winds varies significantly. Winter events increase by 14% for every 10 km up valley toward the ice sheet, and summer events increase by 3%. The spatial distribution of katabatic frequency seems to be partly controlled by inversions. The relatively slow propagation speed of a katabatic front compared to its wind speed suggests a highly turbulent flow. The apparent wind skip (down-valley stations can be affected before up-valley ones) may be caused by flow deflection in the complex topography and by flow over inversions, which eventually break down. A strong return flow occurs at down-valley stations prior to onset of the katabatic winds and after they dissipate. Although the onset and termination of the katabatic winds are typically abrupt, elevated air temperatures remain for days afterward. We estimate that current frequencies of katabatic winds increase annual average temperatures by 0.7degrees to 2.2degreesC, depending on location. Seasonally, they increase (decrease) winter average temperatures (relative humidity) by 0.8degrees to 4.2degrees (-1.8 to -8.5%) and summer temperatures by 0.1degrees to 0.4degreesC (-0.9% to -4.1%). Long-term changes of dry valley air temperatures cannot be understood without knowledge of changes in katabatic winds. [References: 25]
机译:卡塔巴特风极大地影响了南极麦克默多干旱谷的气候。冬季风能使当地气温升高30摄氏度。卡塔巴风的频率在很大程度上控制了冬季(6月至8月)的温度,卡塔巴风的频率每升高1%,温度就会升高1℃,并且它抵消了地形海拔(衰减率)的影响。夏季四方风很重要,但它们对夏季温度的影响较小。卡塔巴风的空间分布变化很大。每往冰川上方10公里的山谷,冬季事件增加14%,而夏季事件则增加3%。倒数频率的空间分布似乎部分受反演控制。与风速相比,四方阵风锋面的传播速度相对较慢,这表明湍流非常强烈。视风跳跃(下谷台站可能在上谷台站之前受到影响)可能是​​由于复杂地形中的流量偏斜以及反演中的流而导致的,最终导致了破裂。在离心风开始之前和消散之后,降谷站会发生强烈的回流。尽管典型风的爆发和终止通常是突然的,但是升高的空气温度在此后的几天中仍然保持不变。我们估计,根据位置的不同,方舟风的当前频率会使年平均温度增加0.7摄氏度至2.2摄氏度。季节性地,它们使冬季平均温度(相对湿度)升高(降低)0.8度至4.2摄氏度(-1.8至-8.5%),夏季温度升高0.1度至0.4摄氏度(-0.9%至-4.1%)。如果不了解卡塔巴风的变化,就无法理解干旱谷空气温度的长期变化。 [参考:25]

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