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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Impact of Wind Direction, Wind Speed, and Particle Characteristics on the Collection Efficiency of the Double Fence Intercomparison Reference
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Impact of Wind Direction, Wind Speed, and Particle Characteristics on the Collection Efficiency of the Double Fence Intercomparison Reference

机译:风向,风速和颗粒特性对双栅栏比较参考收集效率的影响

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摘要

The accurate measurement of snowfall is important in various fields of study such as climate variability, transportation, and water resources. A major concern is that snowfall measurements are difficult and can result in significant errors. For example, collection efficiency of most gauge-shield configurations generally decreases with increasing wind speed. In addition, much scatter is observed for a given wind speed, which is thought to be caused by the type of snowflake. Furthermore, the collection efficiency depends strongly on the reference used to correct the data, which is often the Double Fence Intercomparison Reference (DFIR) recommended by the World Meteorological Organization. The goal of this study is to assess the impact of weather conditions on the collection efficiency of the DFIR. Note that the DFIR is defined as a manual gauge placed in a double fence. In this study, however, only the double fence is being investigated while still being called DFIR. To address this issue, a detailed analysis of the flow field in the vicinity of the DFIR is conducted using computational fluid dynamics. Particle trajectories are obtained to compute the collection efficiency associated with different precipitation types for varying wind speed. The results show that the precipitation reaching the center of the DFIR can exceed 100% of the actual precipitation, and it depends on the snowflake type, wind speed, and direction. Overall, this study contributes to a better understanding of the sources of uncertainty associated with the use of the DFIR as a reference gauge to measure snowfall.
机译:降雪的准确测量在诸如气候多变性,交通运输和水资源等各个研究领域都很重要。一个主要的问题是降雪测量很困难,并且可能导致严重的误差。例如,大多数防风罩配置的收集效率通常随风速的增加而降低。另外,对于给定的风速,观察到很大的散射,这被认为是由雪花类型引起的。此外,收集效率在很大程度上取决于用于校正数据的参考,通常是世界气象组织推荐的双栅栏比对参考(DFIR)。这项研究的目的是评估天气状况对DFIR收集效率的影响。请注意,DFIR定义为放置在双栅栏中的手动仪表。但是,在这项研究中,仅对双栅栏进行了研究,而仍称为DFIR。为了解决这个问题,使用计算流体动力学对DFIR附近的流场进行了详细分析。获得了粒子轨迹,以计算与不同降水类型相关的收集效率,以改变风速。结果表明,到达DFIR中心的降水量可以超过实际降水量的100%,这取决于雪花的类型,风速和方向。总体而言,这项研究有助于更好地理解与使用DFIR作为测量降雪的参考量表相关的不确定性来源。

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