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Evaluation of Fast Flood Diffusion through a Drainage Channel: A Flood Disaster Case Study of Japan’s Kinugawa River, September 10, 2015
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作者 Kazuaki Ohtsuki Yasuo Nihei 《Journal of Water Resource and Protection》 2017年第9期1063-1081,共19页
On September 10, 2015, unprecedented flood was occurred in Kinugawa River basin located on eastern Japan. It inundated 40 km2 of flood plain in Joso city, Ibaraki Prefecture, and more than 4000 people there called for... On September 10, 2015, unprecedented flood was occurred in Kinugawa River basin located on eastern Japan. It inundated 40 km2 of flood plain in Joso city, Ibaraki Prefecture, and more than 4000 people there called for help despite supposedly having sufficient time to evacuate. Some said that small initial flood before main severe flood arrived made them make a mistake in deciding whether to evacuate or stay there, despite having to actually evacuate in reality. This study focused on flood behaviour in this area, in particular, the effect of a small drainage channel lying on the flood plain which caused fast flood diffusion in case of occurring huge overflowing. Field investigations starting on time of the disaster with high-resolution positioning system were conducted to obtain spatial maps of flood depth and height. For appropriate modelling of the effect of small channel, we applied simulation model coupling 1-dimensional (1D) and 2-dimensional (2D) hydraulic scheme on the field and compared results from the 1D/2D coupled model and model without 1D scheme. The models provided information that the flood could reach 4 hours earlier to the city central of Joso city comparing in case of model without 1D scheme. The water depth rose irregularly and it was more confusing and difficult for the victims to make appropriate evacuation act. 展开更多
关键词 flood DIFFUSION 1- and 2-dimensional coupled flood simulation CHANNEL Kinugawa RIVER
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基于一二维耦合模型和水库调度的长江宜宾河段洪水遭遇与淹没分析 被引量:1
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作者 沈豪 曹大岭 +6 位作者 万洪涛 刘舒 杨艳霞 郑林亮 侯宇 赵超辉 程东 《水利水电技术(中英文)》 北大核心 2023年第4期1-21,共21页
【目的】宜宾市地处金沙江与岷江汇合处,且有横江、南广河及其他重要支流汇入,因此洪水遭遇组合复杂,且受金沙江下游向家坝-溪洛渡等梯级水库调度影响明显,其水文水动力计算对下游各城镇河段防洪规划及减灾政策制定具有重要意义。【方... 【目的】宜宾市地处金沙江与岷江汇合处,且有横江、南广河及其他重要支流汇入,因此洪水遭遇组合复杂,且受金沙江下游向家坝-溪洛渡等梯级水库调度影响明显,其水文水动力计算对下游各城镇河段防洪规划及减灾政策制定具有重要意义。【方法】通过构建一二维水动力学耦合数学模型,采用实测洪水验证的分析方法对长江宜宾河段(含重要支流汇入段)的洪水组合进行分析,选取了1961年、1966年两个典型年并对比有无金沙江下游梯级水库调洪的影响,计算各河段和沿岸城镇100 a、50 a及20 a一遇的洪水淹没。【结果】结果表明:(1)当发生超标洪水时,城区主要洪水漫溢淹没分布在宜宾的安边镇、柏溪街道,翠屏区西郊街道以及岷江菜坝镇飞机坝段。(2)不管是1961典型年(岷江为主要来水)还是1966典型年(金沙江为主要来水),岷江流域均受灾较重;其中西郊街道和大观楼街道的洪水主要受金沙江来水和岷江洪水顶托作用明显;岷江漫溢洪水为宜宾城区外洪的主要来源,岷江是宜宾市的防洪重点。【结论】结合防洪工程分布及现有堤防建设情况,菜坝镇飞机坝片区现有的20 a一遇洪水的堤防无法满足实际防洪标准需求;西郊街道滨江公园和备战码头,由于未形成防洪封闭圈,城区局部地区仍处于不设防状态;柏溪镇堤防防洪标准20 a一遇偏低,黑河(柏树溪)受到金沙江回水影响会造成柏溪镇严重洪灾。金沙江在向家坝水库的调蓄作用下,即使发生100 a或超过50 a一遇超标洪水,中心城区均不超过40 a一遇,宜宾城区受金沙江洪水影响相对较小,受岷江回水影响较大。 展开更多
关键词 宜宾市 水库调度 洪水遭遇 一二维水动力耦合模型 洪水淹没 数值模拟 长江流域 梯级联合调度
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