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Mitigation effects of onshore perforated barriers on inundation and forces induced by tsunami and tsunami-driven objects

机译:海上穿孔屏障对海啸和海啸驱动物体引起的淹没和作用力的缓解作用

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摘要

The hydraulic performance of onshore barriers in response to tsunami and a tsunami-driven shipping container was examined experimentally. For the barriers subjected to tsunami up to twice their designed height, experiments with various barrier permeability were conducted to assess the mitigation effect and the concurrent forces on the barrier. The perforated barrier with 30% porosity reduced the momentum flux of the inundation flow behind the barrier by 40-60% even when the water overflowed the barrier. Below the overflow limit, the barrier reduced the fluid force acting on it by 40% of the corresponding force on the impermeable barrier. The force on the perforated barrier was close to half the momentum flux of the incoming inundation. The low-permeability barrier buffered the impact of the drifting shipping container and reduced the impact force on the barrier. The total force induced by the inundation flow associated with the driftage was reduced with decreasing permeability of the barrier. The inverse relation between the impact forces acting on the high- and low-porosity barriers was in contrast to that of the fluid forces. The permeability of wall-type structures has an important influence on inundation mitigation and reduction of the fluid force and the impact force.
机译:通过实验检查了陆上屏障对海啸和海啸驱动的集装箱的响应。对于遭受海啸的屏障达到其设计高度的两倍,进行了各种屏障渗透性的实验,以评估缓解效果和同时对屏障施加的作用力。孔隙度为30%的多孔屏障即使在水溢出屏障的情况下,也使屏障后面的淹没流的动量通量降低了40-60%。在溢流极限以下,屏障将作用在其上的流体力降低了不渗透屏障上相应力的40%。穿孔的屏障上的力接近进入的淹没动量通量的一半。低渗透阻隔层缓冲了漂移的运输集装箱的冲击,并减小了对阻隔层的冲击力。随着障碍物渗透性的降低,由与淹没相关的淹没流引起的总力减小了。作用在高孔隙率和低孔隙率屏障上的反作用力与流体作用力成反比。壁式结构的渗透性对淹没的缓解,流体力和冲击力的降低有重要影响。

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