小桥减渣系统的比较与分析研究

Sung-Joong Kim, D. Jung, Joongu Kang, H. Yeo, Jong-Tae Kim
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引用次数: 2

摘要

洪水发生时,由于碎片沿着河流移动,对桥墩等建筑物的破坏正在迅速增加。因此,本研究产生了碎片尾翼、碎片导流器和碎片清扫器这三种碎片减量系统,并根据减量系统的存在,在实验通道上进行了堆积实验。碎片鳍是一种减少系统,它使堆积在桥上的碎片平行流动,通过桥,它是用木材制造的。此外,采用钢管制作的碎片偏转器具有绕行碎片方向的类型。垃圾清扫机是利用螺旋形圆柱结构的磁力旋转使垃圾通过水流,采用亚克力材料制造而成。根据堆积物的硬度和掉落方式,分析堆积物的程度,对比还原体系的堆积率,进行实验,实验共进行5次。实验结果表明,不同的还原体系类型和不同的堆积体形状,堆积体的堆积速率存在差异,且往往与堆积体的初始形状有很大的关系。对桥体的直接减阻效果依次为碎片导流板、碎片清扫板和碎片鳍,但对于碎片导流板,由于碎片直接堆积在碎片导流板上,可能发生河流湍流、水位、河床变化等破坏和导流板的损失。因此,有必要在设计碎片偏转器时考虑这些问题。
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A Study on the Comparison and Analysis of Debris Reduction System on Small Bridge
Damage to structures, such as bridge piers, are increasing rapidly due to the debris moving along rivers at the time of flooding. Therefore, the debris fin, debris deflector and debris sweeper, which are debris reduction systems, were produced in this study and an accumulation experiment was carried out on the experimental channel according to the existence of the reduction system. The debris fin is the reduction system that creates parallel flow on debris accumulated on the bridge to pass through the bridge, which was produced using wood. In addition, the debris deflector was produced using steel pipes and it has the type of detouring the direction of debris. The debris sweeper passes the debris using the magnetic force rotation of a screw-shaped cylindrical structure by water flow and it was produced using acrylic material. The experiment was carried out by analyzing the level of accumulation according to the hardness and dropping method of the debris and comparing the accumulation rate of reduction systems, and the experiment was carried out 5 times. According to the experimental results, there was a difference in the accumulation rate according to the type of reduction system and the shape of debris, and it often depended significantly on the initial shape of debris accumulation. The direct debris reduction effect on the bridge was higher in the order of the debris deflector, debris sweeper and debris fin, but in case of the debris deflector, damage, such as stream turbulence, changes in water level and river bed, and the loss of deflector can occur due to debris accumulated directly on the debris deflector. Therefore, it is necessary to design the debris deflector considering these issues.
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