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首页> 外文期刊>Journal of Hydrology: Regional Studies >Countermeasures against floods that exceed design levels based on topographical and historical analyses of the September 2015 Kinu River flooding
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Countermeasures against floods that exceed design levels based on topographical and historical analyses of the September 2015 Kinu River flooding

机译:基于2015年9月基努河洪水的地形和历史分析,针对超过设计水平的洪水采取对策

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Study regionThe Kinu River basin receiving serious damage in September 2015 because of the heavy rainfall disaster that hit the districts of Kanto and Tohoku in Japan.Study focusThis paper provides future flood risk management for floods that exceed design levels (FEDL) based on past flood control systems and land use considering the natural topography in the area that was inundated by flood water from the Kinu River.New hydrological insights for the regionThe results of the literature research reveal flood management methods for preventing inundation of the city of Mitsukaido, such as drainage using a discontinuous embankment and a low-lying backswamp. In addition, the areas inundated by this flood were mainly those around a high-altitude natural levee, and residential land in the backland lowland area was developed after the Meiji period (1868–1912). Furthermore, a field survey revealed that many of these flood management systems are not functioning completely because of artificial modification. Identifying locations of potential flooding in areas of low population density is necessary as a countermeasure against FEDL. It is also important to recognize microtopography such as natural levees or backswamps, to induce land use based on the different flood risks of these topographies, and to utilize historical flood control systems as countermeasures against FEDL.
机译:研究区域2015年9月,由于暴雨袭击了日本关东和东北地区,鬼怒河流域遭受了严重破坏。研究重点本文基于过去的防洪措施,为超过设计水平(FEDL)的洪水提供了未来的洪水风险管理考虑到Kinu河被洪水淹没的地区的自然地形的自然系统和土地利用。该地区的新水文见解文献研究的结果揭示了防止三水道市洪水泛滥的洪水管理方法,例如排水不连续的路堤和低洼的后沼泽。此外,这次洪水淹没的地区主要是高海拔天然堤坝附近的地区,而内陆低地地区的住宅用地是在明治时期(1868-1912年)之后开发的。此外,现场调查显示,由于人为修改,许多此类洪水管理系统无法完全发挥作用。确定低人口密度地区潜在洪灾的位置是应对FEDL的对策。同样重要的是要认识到诸如天然堤坝或后沼泽的微观地形,根据这些地形的不同洪水风险来诱导土地使用,并利用历史洪水控制系统作为FEDL的对策。

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