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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Automated algorithm for mapping regions of cold-air pooling in complex terrain
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Automated algorithm for mapping regions of cold-air pooling in complex terrain

机译:自动映射区域的算法冷空气池在复杂地形

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In complex terrain, air in contact with the ground becomes cooled from radiative energy loss on a calm clear night and, being denser than the free atmosphere at the same elevation, sinks to valley bottoms. Cold-air pooling (CAP) occurs where this cooled air collects on the landscape. This article focuses on identifying locations on a landscape subject to considerably lower minimum temperatures than the regional average during conditions of clear skies and weak synoptic-scale winds, providing a simple automated method to map locations where cold air is likely to pool. Digital elevation models of regions of complex terrain were used to derive surfaces of local slope, curvature, and percentile elevation relative to surrounding terrain. Each pixel was classified as prone to CAP, not prone to CAP, or exhibiting no signal, based on the criterion that CAP occurs in regions with flat slopes in local depressions or valleys (negative curvature and low percentile). Along-valley changes in the topographic amplification factor (TAF) were then calculated to determine whether the cold air in the valley was likely to drain or pool. Results were checked against distributed temperature measurements in Loch Vale, Rocky Mountain National Park, Colorado; in the Eastern Pyrenees, France; and in Yosemite National Park, Sierra Nevada, California. Using CAP classification to interpolate temperatures across complex terrain resulted in improvements in root-mean-square errors compared to more basic interpolation techniques at most sites within the three areas examined, with average error reductions of up to 3°C at individual sites and about 1°C averaged over all sites in the study areas.
机译:在复杂的地形,空气与地面接触变得冷却从辐射能量损失平静的晴朗的夜晚,密度比自由气氛在同一高度,下沉到山谷底部。冷却空气收集。文章着重于确定位置景观主题显著降低最低温度比地区的平均水平晴朗的天空和弱的天气条件风,提供一个简单的自动映射方法地点冷空气可能会池。复杂的地区的数字高程模型地形是用来获得表面的地方斜率、曲率和百分位高度相对于周围的地形。分为容易帽,不容易盖,或表现出没有信号,基于标准帽发生在平坦的斜坡在当地的地区(负曲率和萧条或山谷低百分位)。地形放大系数(TAF)计算,以确定寒冷的空气中硅谷可能流失或池。针对分布式温度检查吗测量在尼斯淡水河谷,落基山科罗拉多州国家公园;法国;内华达州、加利福尼亚州。插入温度在复杂的地形导致改善均方根错误而更基本的插值技术在大多数网站在三个领域检查,平均误差降低3°C在个人网站和平均约1°C在该研究领域的所有网站。

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