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Hazard area mapping during extreme rainstorms in South Korean mountains.

机译:韩国山区极端暴雨期间的危险区域映射。

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摘要

The concern for climate change has increased worldwide. Localized rain storms with high intensity and short duration have been observed in the United States, Europe, Australia, and China. South Korea is one of the countries that have also been impacted by extreme rainfall events during typhoons. Extreme rainstorms have caused major damage from landslides and debris flows in the South Korean mountains.;The Duksan Creek watershed in South Korea was selected to simulate surface runoff using TREX during the extreme rainstorm precipitation event from July 14 to July 16, 2006. The maximum hourly rainfall was 62 mm on July 15 in 2006. The three hour rainfall from 08:00 AM to 11:00AM on this day was 168 mm. This rainstorm triggered 518 landslides and caused major infrastructure damage from debris flows. The three hour rainfall precipitation has a 100 year return period.;The TREX model was calibrated in two mountainous regions of South Korea. The relative percent difference of time to peak and peak discharge on the Naerin Stream and the Naesung Stream were 6.25 %, -2.58 % and 1.90 %, -0.25 %, respectively. The TREX simulation at the Duksan Creek was performed at a 30 m resolution with distributed data on topography (DEM), soil type, and land use. The peak discharge from the TREX simulation at the Duksan Creek watershed was 452 m3/s. This value was compared to the results of several other methods and the relative percent difference was -1.1 %. The peak discharge was also compared with specific peak discharge measurements and this value corresponds to the range of values for similar watersheds.;The TREX model can calculate the distribution of infiltration depth. The infiltration depth calculation typically ranged from 0.2 m to 0.3m with maximum value of 1.2 m. Based on the infinite slope analysis, such infiltration depths correspond to a critical slope angle of 25° to 29°. This range of the critical slope angle was comparable to the angle of 26° from the field investigations and from the analysis of satellite images and aerial photographs at the Duksan Creek. Several different hazard mapping methods were compared including a landslide hazard map from the Korea Forest Institute (KFRI), SINMAP, and TREX. The result of the relative predictability of TREX was slightly better an improvement of 24.6 % than the result of SINMAP.;The maximum shear stress could also be calculated by the TREX model. Values of shear stress typically ranged between 0.223 kPa to 0.895 kPa in the tributaries and 1.79 kPa to 17 kPa in the main channel. Based on a critical shear stress analysis, a 1 m diameter boulder reaches incipient motion at a shear stress of 0.895 kPa.
机译:全球范围内对气候变化的关注日益增加。在美国,欧洲,澳大利亚和中国,已经观察到局部暴雨强度高且持续时间短。韩国也是受到台风期间极端降雨事件影响的国家之一。极端暴雨已对韩国山区的滑坡和泥石流造成了严重破坏。;在2006年7月14日至7月16日的极端暴雨降雨事件中,选择了韩国的Duksan Creek流域,使用TREX模拟地表径流。 2006年7月15日,每小时降雨量为62毫米。从当天的08:00 AM到11:00 AM,三个小时的降雨量为168 mm。这场暴雨引发了518次滑坡,并由泥石流造成了严重的基础设施破坏。三小时的降雨降水有100年的重现期。TREX模型在韩国的两个山区进行了校准。 Naerin流和Naesung流上到达峰值和峰值放电的时间的相对百分比差异分别为6.25%,-2.58%和1.90%,-0.25%。 Duksan Creek的TREX模拟以30 m的分辨率进行,其中包含有关地形(DEM),土壤类型和土地利用的分布式数据。杜克桑克里克(Duksan Creek)流域TREX模拟的峰值流量为452 m3 / s。将该值与其他几种方法的结果进行比较,相对百分比差异为-1.1%。还将峰值排放量与特定的峰值排放量测量值进行比较,该值对应于类似流域的值的范围。; TREX模型可以计算入渗深度的分布。渗透深度的计算范围通常为0.2 m至0.3 m,最大值为1.2 m。基于无限斜率分析,这种渗透深度对应于25°至29°的临界斜角。临界倾斜角的范围与野外调查以及Duksan Creek卫星图像和航拍照片的分析得出的26°角相当。比较了几种不同的灾害制图方法,包括韩国森林研究所(KFRI)的滑坡灾害图,SINMAP和TREX。 TREX的相对可预测性的结果比SINMAP的结果略好24.6%。;最大剪切应力也可以通过TREX模型来计算。支流中的剪应力值通常在0.223 kPa至0.895 kPa之间,主通道中在1.79 kPa至17 kPa之间。根据临界剪应力分析,直径为1 m的巨石在0.895 kPa的剪应力下达到初始运动。

著录项

  • 作者

    Kim, Jaehoon.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Geomorphology.;Engineering Civil.;Meteorology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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