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Terrain and its effects on fog occurrence

机译:地形及其对雾发生的影响

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摘要

Fog is a very complex phenomenon, relevant to both atmospheric physics and chemistry, contributing to the atmospheric inputs of both nutrients and pollutants to the environment. Fog occurrence is affected by numerous factors. The aim of this study is to examine the effects of terrain on fog occurrence. Namely, we studied in detail how altitude, slope and landform influence the probability of fog occurrence using the generalized additive model. In particular, we investigated how different explanatory variables might modify (deform) the trend and the seasonal component of the probability of fog occurrence. We used long-term records of daily fog occurrence measured in 1981-2017 at 56 professional meteorological stations in Romania, reflecting different environments and geographical areas. The altitude of the sites under review ranged between 13 and 2504 m above sea level, the coverage of localities at different altitudes being highly uneven. Out of the terrain variables considered, the most decisive influence was found to be altitude. We have included information on slope and landform, which refined and bettered the basic model. Our model results indicated a significant decrease in the probability of fog occurrence over the examined period. The behaviour of fog differed according to the altitude, the most profound effects being observed for ground-level fog and fog above flat terrain. The probability of fog occurrence at different altitudes varied mostly in summer and autumn, whereas it was very similar in winter.
机译:雾是一种非常复杂的现象,与大气物理和化学相关,有助于营养素和污染物对环境的大气输入。雾发生受到众多因素的影响。本研究的目的是检查地形对雾发生的影响。即,我们详细研究了海拔,坡度和地貌如何影响使用广义添加剂模型的雾发生的概率。特别是,我们调查了不同的解释变量如何修改(变形)雾化概率的趋势和季节性分量。我们在罗马尼亚的56个专业气象站,在1981-2017中使用了每日雾化的长期记录,反映了不同的环境和地理区域。正在审查的地点的海拔高度在海平面上调13至2504米,不同高度的地方的覆盖范围高度不均匀。从地形变量中考虑过,发现最果断的影响是高度。我们已经包含有关斜坡和地貌的信息,这改进并更好的基本模型。我们的模型结果表明,在检查期间雾发生的概率显着降低。雾的行为根据高度而异,在平坦地形上方的地面雾和雾中被观察到最深刻的影响。雾发生在不同高度的概率主要在夏季和秋季各种各样地变化,而在冬季非常相似。

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  • 来源
    《Science of the total environment》 |2021年第10期|144359.1-144359.10|共10页
  • 作者单位

    Czech Hydrometeorological Institute. Na Sabatce 17.143 06 Prague 4 Komorany Czech Republic Institute for Environmental Studies. Faculty of Science. Charles University in Prague Benatska 2 128 00 Prague 2 Czech Republic;

    Institute of Computer Science of the Czech Academy of Sciences Pod Vodarenskou vezi 2 182 07 Prague 8 Czech Republic National Institute of Public Health Srobarova 48 10042 Prague 10 Czech Republic;

    Institute of Computer Science of the Czech Academy of Sciences Pod Vodarenskou vezi 2 182 07 Prague 8 Czech Republic National Institute of Public Health Srobarova 48 10042 Prague 10 Czech Republic;

    Meteo Romania (National Meteorological Administration) Department of Climatology 013 686 Bucharest Romania;

    Institute of Computer Science of the Czech Academy of Sciences Pod Vodarenskou vezi 2 182 07 Prague 8 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fog; Terrain; Romania; Generalized additive model; Trend; Seasonality; Seasonality deformation; 1981-2017; Altitude; Slope; Curvature;

    机译:多雾路段;地形;罗马尼亚;广义添加剂模型;趋势;季节性;季节性变形;1981-2017;高度;坡;曲率;

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