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Patterns of local circulation in the Itaipu Lake Area: numerical simulations of lake breeze

机译:伊泰普湖地区局部环流的模式:湖风的数值模拟

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摘要

The lake-breeze circulation in the Itaipu region was investigated numerically using a nonhydrostadc version of the Topographic Vorticity Model. The area of study corresponds to a 100 km X 180 km rectangle, located on the Brazil-Paraguay border, withItaipu Lake in its center. The characteristics of the lake breeze generated by the numerical experiments were consistent with the observations available in the area. The numerical experiments have shown that the land use effect is important in the spatial distribution of the lake-breeze circulation and that the topography contributes to modulating the breeze intensity, with the daytime valley-mountain circulation intensifying the lake breeze. However, the circulation pattern observed during daytime over the region is mainly due to the Itaipu Lake presence. The numerical results indicated that Itaipu Lake is able to generate and sustain a lake breeze, with 3.5 m s~(-1) of maximum intensity and 1500-m depth, that propagates inland at 5.1 km h~(-1) undertypical undisturbed and calm-wind summer conditions.
机译:使用非涡流形式的地形涡度模型,对伊泰普地区的湖风循环进行了数值研究。研究区域对应于一个100公里X 180公里的矩形,该矩形位于巴西-巴拉圭边界,以伊泰普湖为中心。数值实验产生的湖风特征与该地区的观测结果一致。数值实验表明,土地利用效应在湖风循环的空间分布中起着重要的作用,地形起着调节微风强度的作用,而日间谷山环流则加剧了湖风。然而,白天在该区域观察到的循环模式主要是由于伊泰普湖的存在。数值结果表明,伊泰普湖能够产生并维持最大强度为3.5 ms〜(-1),深度为1500m的湖风,并在5.1 km h〜(-1)下向内陆传播,未受到干扰和平静。夏季风。

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