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Characteristics of Precipitation Particles Measured by PARSIVEL Disdrometer at a Mountain and a Coastal Site in Korea

机译:Parasivel Discoltometer在山区和韩国沿海地区测量的降水颗粒特征

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This study analyzed HC (Hydrometeor Classification), rain rate, and DSD (Drop Size Distribution) observed using an optical disdrometer, parsivel, at a mountain (Daegwallyeong, DG) and a coastal site (Mokpo, MP) over 2 years (2010-2011). The HC accuracies of the drizzle, rain, and snow were about 95%, 87%, and 80% respectively. The R~2 (coefficient of determination) of the parsivel with TB (Tipping Bucket) rain gauge was 0.91 at MP and 0.96 at DG. The shapes of drizzle and rain DSD observed at DG and MP were similar while the variation in snow DSD was easily influenced by weather condition such as temperature and wind speed. The relatively warm temperature (-5 °C ~ -0 °C) increased the snow particle number concentration at around 0.6~1 mm diameter and the relatively cold temperature (-15 °C ~ -10 °C) decreased it above 2 mm diameter. Although wind speed was not a strong factor in snow DSD, larger particles were apt to form in relatively strong wind conditions. Due to different wind directions for the maritime and continental regions, snow particle number density (N(D)) at MP and DG exhibited large differences in terms of snow DSD shape and the number concentration. For instance, in the maritime precipitation, snow DSD shape at MP was broader than that at DG and small-size snow particles were observed at DG more frequently than at MP. In addition, camera-observed snow particle type measurement was carried out at DG in January to March 2010. During the measurement at DG, a mixed type of plate and column was the most frequent and an aggregation of plate type frequently occurred at lower temperatures.
机译:本研究分析了使用光学歧视算法,山(Daegwallyeong,DG)和沿海网站(Mokpo,MP)的光学抑制计,Parsivel(Mokpo,MP)观察到的HC(水流仪分类),降雨率和DSD(跌落尺寸分布)(2010 - 2011)。毛毛雨,下雨和雪的HC精度分别为95%,87%和80%。将Tb(撕裂铲斗)雨量仪的静脉凝胶的R〜2(判定系数)在MP和0.96处为0.91。在DG和MP观察到的毛毛雨和雨DSD的形状类似,同时雪DSD的变化容易受到温度和风速等天气状况的影响。相对温度的温度(-5°C〜-0°C)增加了大约0.6〜1mm的雪粒子数浓度,并且相对寒冷的温度(-15℃〜10℃)降低,直径高于2毫米。虽然风速不是雪DSD中的强因素,但较大的颗粒在相对强的风条件下恰好形成。由于海上和大陆区域的不同风向,MP和DG的雪粒子数密度(N(d))在雪DSD形状和数量浓度方面表现出大的差异。例如,在海上沉淀中,MP的雪DSD形状比DG在DG的比较频率比在MP更频繁地观察到小尺寸的雪粒子。此外,在2010年1月至3月在DG进行了相机观察到的雪粒子型测量。在DG的测量期间,混合类型的板和柱是最常见的,并且在较低温度下经常发生板式的聚集。

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