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首页> 外文期刊>European Journal of Environmental and Civil Engineering >Experimental study of seawall piping under water level fluctuation
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Experimental study of seawall piping under water level fluctuation

机译:水位波动下海堤管道的试验研究

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摘要

The hydraulic action, such as waves, tides and floods, is the main cause of piping failure in seawall engineering, while the suffusion failure mechanism in this case has not been specially studied. Indoor experimental studies of piping failure of seawall under the waves and tidal water level fluctuations are still in a blank state. Based on the designed experimental devices in the research work, six groups of model tests were carried out with crushed and round gravel. The seepage velocity, seepage gradient, permeability coefficient and the fine particle movement trends were analysed. The changing rules of these variables under water level cycle were studied. It has been found that the critical hydraulic gradient of the fine piping particles inside the seawall became smaller with the increase in water level fluctuation cycles. At the same time, the critical flow velocity tended to increase gradually. The piping occurrence probability in the round gravel-filled seawall was larger than that in the crushed gravel-filled seawall. The internal fine-grained structure showed dynamic changes in migration under the fluctuation of the water level cycle.
机译:波浪,潮汐和洪水等水力作用是海堤工程中管道故障的主要原因,而这种情况下的注水破坏机理尚未经过专门研究。在海浪和潮汐水位波动下海堤管道破坏的室内实验研究仍处于空白状态。基于研究工作中设计的实验装置,对碎石和圆形砾石进行了六组模型测试。分析了渗流速度,渗流梯度,渗透系数和细颗粒运动趋势。研究了这些变量在水位循环下的变化规律。已经发现,随着水位波动周期的增加,海堤内细管道颗粒的临界水力梯度变小。同时,临界流速趋于逐渐增加。圆形砾石充填海堤的管道发生概率大于破碎的砾石充填海堤的管道发生概率。内部细颗粒结构在水位循环的波动下显示出迁移的动态变化。

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