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Characteristics of cloud occurrence using ceilometer measurements and its relationship to precipitation over Seoul

机译:利用云高仪测量云的出现特征及其与首尔降水的关系

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摘要

AbstractClouds are an important component of the atmosphere that affects both climate and weather, however, their contributions can be very difficult to determine. Ceilometer measurements can provide high resolution information on atmospheric conditions such as cloud base height (CBH) and vertical frequency of cloud occurrence (CVF). This study presents the first comprehensive analysis of CBH and CVF derived using Vaisala CL51 ceilometers at two urban stations in Seoul, Korea, during a three-year period from January 2014 to December 2016. The average frequency of cloud occurrence detected by the ceilometers is 54.3%. It is found that the CL51 is better able to capture CBH as compared to another ceilometer CL31 at a nearby meteorological station because it could detect high clouds more accurately. Frequency distributions for CBH up to 13,000m providing detailed vertical features with 500-m interval show 55% of CBHs below 2km for aggregated CBHs. A bimodal frequency distribution was observed for three-layers CBHs. A monthly variation of CVF reveals that frequency concentration of lower clouds is found in summer and winter, and higher clouds more often detected in spring and autumn. Monthly distribution features of cloud occurrence and precipitation are depending on seasons and it might be easy to define their relationship due to higher degree of variability of precipitation than cloud occurrence. However, a fluctuation of cloud occurrence frequency in summer is similar to precipitation in trend, whereas clouds in winter are relatively frequent but precipitation is not accompanied. In addition, recent decrease of summer precipitation could be mostly explained by a decrease of cloud occurrence. Anomalous precipitation recorded sometimes is considerably related to corresponding cloud occurrence. The diurnal and daily variations of CBH and CVF from ceilometer observations and the analysis of microwave radiometer measurements for two typical cloudiness cases are also reviewed in parallel. This analysis in finer temporal scale exhibits that utilization of ground-based observations together could help to analyze the cloud behaviors.HighlightsCL51 ceilometer can retrieve Cloud base height and backscatter profiles up to 13,000 and 15,000m.The first study of a high-resolution cloud distribution using ceilometer measurements over Seoul for urban meteorology.Comparison of the results obtained from two different models (CL51 and CL31) of ceilometer.Typical cloudiness cases were discussed through analysis from ceilometer and microwave radiometer measurements.
机译: 摘要 云是影响气候和天气的大气的重要组成部分,但是,其贡献可能很难确定。云高仪的测量可以提供有关大气条件的高分辨率信息,例如云底高(CBH)和云出现的垂直频率(CVF)。本研究提供了从2014年1月至2016年12月的三年期间,在韩国首尔的两个城市站点中使用维萨拉CL51云高仪得出的CBH和CVF的首次综合分析。云高仪检测到的平均云出现频率为54.3。 %。发现与附近气象站的另一台云高仪CL31相比,CL51能够更好地捕获CBH,因为它可以更准确地检测到高云。长达13,000m的CBH的频率分布提供了间隔为500-m的详细垂直特征,表明总CBH的5%的CBH低于2km。对于三层CBH,观察到双峰频率分布。 CVF的每月变化表明,在夏季和冬季发现较低云的频率集中,而在春季和秋季更经常检测到较高的云。云的发生和降水的月度分布特征取决于季节,并且由于与云的发生相比降水的变化程度更高,因此可能容易定义它们之间的关系。但是,夏季云的出现频率的波动趋势与降水相似,而冬季云的发生频率相对较高,但降水却不伴有。此外,最近夏季降水的减少可以用云量减少来解释。有时记录到的异常降水与相应的云的出现有很大关系。同时还回顾了来自云高仪观测的CBH和CVF的日变化和每日变化以及两个典型浑浊情况的微波辐射计测量分析。在更精细的时间尺度上进行的此分析表明,将地面观测资料一起使用可以帮助分析云的行为。 突出显示 CL51云高仪可以检索高达13,000和15,000m的云基高度和反向散射剖面。 < ce:list-item id =“ li0010”> 使用云高仪对高分辨率云分布进行的首次研究 从两个不同的云高仪模型(CL51和CL31)获得的结果进行比较。 通过云高仪和微波辐射计测量的分析,讨论了典型的混浊情况。

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