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Numerical Simulations of Seasonal Variations of Rainfall over the Island of Hawaii

机译:夏威夷岛季节性变化的数值模拟

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摘要

The seasonal variations of rainfall over the island of Hawaii are studied using the archives of the daily model run from the fifth-generation Pennsylvania State University-NCAR Mesoscale Model (MM5) from June 2004 to February 2010. Local effects mainly drive the rainfall on the Kona coast in the early morning and the lower slopes in the afternoon. During the summer, the incoming trade winds are more persistent and moister than in winter. The moisture content in the wake zone is higher than open-ocean values because of the convergent airflow associated with dual counterrotating vortices. As the westerly reversed flow moves toward the Kona coast, it decelerates with increasing moisture and a moisture maximum over the coastal area, especially in the afternoon hours in summer months. The higher afternoon rainfall on the Kona lower slopes in summer than in winter is caused by a moister (>6 mm) westerly reversed flow bringing moisture inland and merging with a stronger upslope flow resulting from solar heating. Higher nocturnal rainfall off the Kona coast in summer than in winter is caused by the low-level convergence between a moister westerly reversed flow and offshore flow. On the windward slopes, the simulated rainfall accumulation in winter is higher because of frequently occurring synoptic disturbances during the winter storm season. Nevertheless, early morning rainfall along the windward coast and afternoon rainfall over the windward slopes of the Kohala Mountains is lower in winter because the incoming trades are drier.
机译:使用来自2004年6月至2010年2月的第五代宾夕法尼亚州立大学(MM5)的日常模型的档案馆研究了夏威夷岛上的季节性变化。局部效果主要推动降雨Kona海岸在清晨和下午下滑。在夏季,传入的贸易风比冬天更持久和拖延。由于与双反应涡流相关的收敛气流,唤醒区中的水分含量高于开阔的海洋值。随着西方逆转的流动走向科纳海岸,随着沿海地区的水分增加和最大水分,特别是在夏季下午的时间减速。在夏天的Kona下坡上较高的下午降雨量比在冬天的斜坡上是由水桶(> 6毫米)的西方逆转流动引起水分内陆,并用太阳能加热产生的更强大的上坡流量合并。夏天的夜间夜间降雨量高于冬季的降雨是由粪便逆转流动和海上流动之间的低级收敛引起的。在迎风斜坡上,由于冬季风暴季节经常发生的舞蹈干扰,冬季的模拟降雨量较高。尽管如此,沿着迎风海岸的清晨降雨和下午的降雨在冬天的黄昏山脉的迎风坡度,因为传入的交易是干燥的。

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