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An Ultra-high Resolution Synthetic Precipitation Data for Ungauged Sites

机译:空旷地点的超高分辨率合成降水数据

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摘要

Despite the enormous damage caused by record heavy rainfall, the amount of precipitation in areas without observation points cannot be known precisely. One way to overcome these difficulties is to estimate meteorological data at ungauged sites. In this study, we have used observation data over Seoul city to calculate high-resolution (250-meter resolution) synthetic precipitation over a 10-year (2005-2014) period. Furthermore, three cases are analyzed by evaluating the rainfall intensity and performing statistical analysis over the 10-year period. In the case where the typhoon "Meari" passed to the west coast during 28-30 June 2011, the Pearson correlation coefficient was 0.93 for seven validation points, which implies that the temporal correlation between the observed precipitation and synthetic precipitation was very good. It can be confirmed that the time series of observation and synthetic precipitation in the period almost completely matches the observed rainfall. On June 28-29, 2011, the estimation of 10 to 30 mm h(-1) of continuous strong precipitation was correct. In addition, it is shown that the synthetic precipitation closely follows the observed precipitation for all three cases. Statistical analysis of 10 years of data reveals a very high correlation coefficient between synthetic precipitation and observed rainfall (0.86). Thus, synthetic precipitation data show good agreement with the observations. Therefore, the 250-m resolution synthetic precipitation amount calculated in this study is useful as basic data in weather applications, such as urban flood detection.
机译:尽管由于创纪录的暴雨造成了巨大的破坏,但无法精确知道没有观测点的地区的降水量。克服这些困难的一种方法是估算未开垦地点的气象数据。在这项研究中,我们使用首尔市的观测数据来计算10年(2005-2014年)期间的高分辨率(250米分辨率)合成降水。此外,通过评估降雨强度并在10年期间进行统计分析,分析了3个案例。在2011年6月28日至30日台风“ Meari”进入西海岸的情况下,七个验证点的Pearson相关系数为0.93,这意味着观测到的降水与合成降水之间的时间相关性非常好。可以确认,该期间的观测和合成降水的时间序列几乎与观测到的降水完全匹配。在2011年6月28-29日,连续强降水的10至30 mm h(-1)的估计是正确的。此外,还表明,在所有三种情况下,合成降水都紧随观察到的降水。对10年数据的统计分析显示,合成降水与观测降水之间的相关系数非常高(0.86)。因此,合成降水量数据与观测值吻合良好。因此,本研究计算出的250米分辨率合成降水量可用作天气应用(如城市洪水检测)中的基础数据。

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