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Vertical variation of ice loads from freezing rain

机译:冰雨引起的冰负荷的垂直变化

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Ice that accumulates on structures during a freezing rain storm can impose significant loads. The design of open structures, including power transmission lines and communication towers, takes into account the vertical load imposed on the structure by the weight of the ice and the horizontal load imposed from the wind drag on the ice-covered structural components. The increase in wind speed with height above ground in the boundary layer increases the horizontal flux of drops of water to the structure, resulting in an increase in ice load with height above ground. This paper evaluates the additional effect of the evaporation of precipitation in the cold air layer at the surface on the vertical variation in the accreted ice load on tall communication towers and masts. The results show that ice thickness increases over the height of the tallest towers, enhancing the thickness increase from the wind speed gradient in the boundary layer. The magnitude of the effect depends on the assumed rain drop distribution. The evaporation-enhanced ice thickness profiles based on data from freezing rain storms at nine weather stations in the United States can be approximated by a power law.
机译:在冻雨期间积聚在建筑物上的冰可能会施加很大的载荷。包括输电线路和通讯塔在内的开放式结构的设计考虑了冰的重量在结构上施加的垂直载荷以及风在冰上覆盖的结构部件上施加的水平载荷。随着边界层中高于地面的高度,风速的增加会增加水滴向结构的水平通量,从而导致随着地面以上的高度的冰负荷增加。本文评估了地面冷空气层中的降水蒸发对高层通讯塔和桅杆上积冰量垂直变化的附加影响。结果表明,随着最高塔的高度,冰的厚度增加,边界层的风速梯度增加了冰的厚度。影响的大小取决于假定的雨滴分布。根据美国九个气象站的冰冻暴雨数据得出的蒸发量增加的冰厚曲线可以通过幂律近似。

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