行洪区
- 网络Flood area;flood flowing distriet
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荆山湖行洪区进洪闸消能防冲与控制运用试验研究
Experiment study on energy dissipation-erosion protection and control operation of flood gate of jingshan lake flood detention district
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最后是行洪区得两个口门一般是通过爆破或人工扒口打开,其开启顺序对干流河道水位、流量情况也有一定影响。
Finally , opening the flood diversion work 's gate is through blasting or manpower , and the open order influences the discharge and elevation of water in main river .
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他们籍加强堤防使该村庄免受洪水之灾。原来行洪区和蓄洪垸的破垸受灾人口,不再返回原地。
By strengthening the embankments they secured the village from floods . Residents of the old flood-water discharge areas or flood-destroyed dyke-enclosed places are , in principle , not to move back .
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行蓄洪区沉积物总体上的生态风险以元素Cd,Hg为主。
The main ecological risk factors of the surface sediments are Cd , Hg .
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淮河流域的可持续发展及行蓄洪区的移民安置DDTs在海河干流市区段沉积物/水间迁移行为研究
Sustainable Development of Huaihe River Basin and Arrangement for Moving Residents in Flood Approach and Storage Zone ; DDTs Transport Between Sediment and Water in the Mainstream of Haihe River in the Urban Area
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行蓄洪区受灾面积的简便水文计算方法初探
On Simplified Calculation Method of Flood - stricken Acreage in Floodplain
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行蓄洪区型流域洪水模拟
Flood Modeling for Basin with Regions of Flood Storage and Relief
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浅议安徽省行蓄洪区建设与管理
On construction and management of flood detention areas in Anhui Province
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淮河流域行蓄洪区可持续发展研究
Study on the Sustainable Development of the Huaihe River Basin Floodplain
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行蓄洪区开启优化的研究行蓄洪区可持续发展战略探讨
Research on the sustainable development way for flood diversion and storage areas
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大型行蓄洪区洪水演进数值模拟与三维可视化技术
Numerical simulation and 3-D visualization of flood propagation in large-scale detention basins
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由1998年长江洪水对淮河行蓄洪区的思考
From 1998 Yangtze River Flood to Huaihe River Water Detention and Diversion
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具有行蓄洪区的河道流量演算方法探讨
Research on Channel Routing Method with Flood Diversion and Flood Retarding Areas
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淮河流域行蓄洪区规划后评价研究
The Post-evaluation Study of Competent Flood Storage Areas Plan in Huaihe River Basin
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具有行蓄洪区的复杂水系实时洪水预报研究
Real-time flood forecasting for complex watershed with flood diversion and flood retarding areas
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行蓄洪区调度,比起其他的水利防洪工程调度,有其特殊的方面。首先是最优准则的确立。
Compared with other hydraulic engineering works , dispatching the flood diversion works has its speciality .
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评价结果显示行蓄洪区表层沉积物污染处于轻中等危害程度。
The assessment results show that the heavy metal pollution of surface sediment belongs to light-middle degree risk .
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淮河流域行蓄洪区运用补偿方法探析
Application of compensation methods in the flood district of Huaihe River basin Research on Optimizing Decision of Using Flood Diversion Works
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淮河(安徽段)行蓄洪区沉积物重金属污染及潜在生态危害研究
The Study of Heavy Metal Pollution in the Sediments & the Potential Ecological Risk in the Flood Diversion Areas Along Huaihe River , Anhui Province
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科学调度运用行蓄洪区是目前减轻淮河中游洪灾损失的有效途径之一,建立洪水模型模拟洪水演进能为调度提供决策支持。
To regulate the flood storage and relief scientifically is one of the efficient measures to reduce the flood damage , and the flood model can serve to make the flood prevention decision .
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对过度围垦的田地,要根据条件与可能,区别不同情况,逐步平垸行洪、退田还湖。由1998年长江洪水对淮河行蓄洪区的思考
In over-cultivated lake areas . in line with local conditions , the embankments will be removed to help discharge flood water and return farmland to the lake . From 1998 Yangtze River Flood to Huaihe River Water Detention and Diversion
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采用理论分析与专家咨询相结合的方法,建立了行蓄洪区规划后评价的指标体系,并运用模糊综合评判法对淮河流域行蓄洪区规划进行了评价。
Set up target system of flood flowing and storing area design back-evaluation by the means combined with theory analysis and expert consultation . Then evaluate the flood flowing and storing area design of huaihe drainage basin with fuzzy synthetical evaluation method .
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本文以淮河干流行蓄洪区规划后评价为例,对行蓄洪区规划及实施的全过程进行分析评价,总结成功经验,查找存在的问题,并提出今后改进的建议。
This text takes Huaihe River flood storage area as an example on post-evaluation , and analyses its plan and the whole course , then summarizes successful experience and looks for the existing problems , at last offers the suggestion of improving in the future .
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分析淮河行蓄洪区运用补偿的现行办法,从政府成本角度出发,指出现行补偿办法存在政府部门工作量大、工作效率难以提高、政府成本难以降低的问题。
The current compensation method for the flood district of Huaihe River is analyzed . From the viewpoint of government cost , it is put forward that the current compensation method is of the following problems : large workload , low efficiency as well high government cost , etc.