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A Case Study of Processes Impacting Precipitation Phase and Intensity during the Vancouver 2010 Winter Olympics

机译:温哥华2010年冬季奥运会期间影响降水阶段和强度的过程的案例研究

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Accurate forecasting of precipitation phase and intensity was critical information for many of the Olympic venue managers during the Vancouver 2010 Olympic and Paralympic Winter Games. Precipitation forecasting was complicated because of the complex terrain and warm coastal weather conditions in the Whistler area of British Columbia, Canada. The goal of this study is to analyze the processes impacting precipitation phase and intensity during a winter weather storm associated with rain and snow over complex terrain. The storm occurred during the second day of the Olympics when the downhill ski event was scheduled. At 0000 UTC 14 February, 2 h after the onset of precipitation, a rapid cooling was observed at the surface instrumentation sites. Precipitation was reported for 8 h, which coincided with the creation of a nearly 0°C ithermal layer, as well as a shift of the valley flow from up valley to down valley. Widespread snow was reported on Whistler Mountain with periods of rain at the mountain base despite the expectation derived from synoptic-scale models (15-km grid spacing) that the strong warm advection would maintain temperatures above freezing. Various model predictions are compared with observations, and the processes influencing the temperature, wind, and precipitation types are discussed. Overall, this case study provided a well-observed scenario of winter storms associated with rain and snow over complex terrain.
机译:在2010年温哥华冬奥会和残奥会期间,准确预测降水的相位和强度是许多奥运场馆管理员的关键信息。由于加拿大不列颠哥伦比亚省惠斯勒地区复杂的地形和温暖的沿海天气条件,因此降水预报非常复杂。这项研究的目的是分析在复杂地形上与降雨和降雪有关的冬季天气风暴期间影响降水阶段和强度的过程。暴风雪发生在奥运会第二天,当时预定了下坡滑雪比赛。在2月14日0000 UTC,降水开始后2小时,在地面仪器现场观测到快速冷却。据报道有8小时的降水,这与近0°C的等温层的形成,以及山谷流从上谷到下谷的变化相吻合。据报道,惠斯勒山有大范围的降雪,尽管在天气尺度模型(15 km的网格间距)上得出的期望是强烈的对流将使温度保持在冰点以上,但在山脚下有降雨。将各种模型预测与观测结果进行比较,并讨论影响温度,风和降水类型的过程。总体而言,该案例研究提供了一个复杂的地形上观察到的冬季风暴与雨雪相关的场景。

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