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1.
Research on Automatic Water Sluice Gate in the Use of High Silt Concentration Flood Resource;
高含沙洪水资源利用中的自控闸门的研究
2.
Research on Content of Soil Component Using Flood with High Sand after Silting on Base of Artificial Intelligence;
基于人工智能的利用高含沙洪水淤地后土壤成分含量研究
3.
FEATURES AND REGULATION OF HIGH-SEDIMENT FLOODS IN THE LOWER YELLOW RIVER
黄河下游高含沙洪水冲淤特性及其调控对策初探
4.
Numerical simulation of the process of hyperconcentrated flood routing and channel deformation in the Lower Yellow River
黄河下游高含沙洪水演进及河床冲淤过程的数值模拟
5.
Sediment Transport Characteristics of Hyperconcentration Flood of the Yellow River and its Bed Formation
黄河高含沙量洪水的输移特性及其河床形成
6.
Th Preliminary Study on the Stress of Flow with Hyper-Concentration on the Condition of Stationary and It Effect on the Floog of Weihe River;
静态高含沙浑水剪切力及对渭河洪水影响的初步研究
7.
Forecast of Inflow Hydrograph and Out Flow Sediment Concentration of Reservoir;
水库入库洪水预报与出库含沙量预测
8.
Research on Overbank Flood Sediment Concentration and Its Gradation Changes of Lower Yellow River
黄河下游漫滩洪水含沙量和级配变化研究
9.
Establishment and applicable study of forecasting scheme for flood maximum sediment concentration at Longmen Station on Middle Yellow River
黄河中游龙门站洪水最大含沙量预报方案的建立及应用研究
10.
Study on Turbulent Characteristics and Abrasion Mechanisms of High-velocity Sediment-laden and Aerated Flow;
高速含沙掺气水流及磨蚀机理的研究
11.
The definition of flood hazard includes two aspects: flood and hazard.
洪灾的含义包括洪水和灾害两个方面。
12.
Study on Key Technical Problems in Modeling of Hyper-Concentrated Flows;
高含沙水流模拟的几个关键技术问题研究
13.
Research on Silted Shape and Silt Reduction in the Pumping Station Forebay with Water Heavily Silt Mixture
高含沙水泵站前池淤积形态及减淤研究
14.
This brings about floods and sandstorms.
这种行为导致了洪水和沙尘暴的发生。
15.
sandbag the doorway in case of flooding
在门口堆上沙袋以防洪水.
16.
Shape optimization test of Dabeigou spillway reservior desilting tunnel
大北沟水库泄洪排沙洞体型优化试验
17.
Numerical simulation of flood evolution in flood diversion and detention area with well-shaped canals
含井字形河渠的分蓄洪区洪水演进数值模拟
18.
The paddy?upland system increased clay dispersion content and soil fertility.
水旱轮作可增加土壤黏粒含量,提高高沙土肥力水平;