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首页> 外文期刊>Journal of Waterway, Port, Coastal and Ocean Engineering >Erosion by Wave Action of Consolidated Cohesive Bottom Containing Cohesionless Sediment
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Erosion by Wave Action of Consolidated Cohesive Bottom Containing Cohesionless Sediment

机译:含无粘性泥沙的固结粘性底部的波浪作用引起的冲蚀

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The erosion processes of consolidated cohesive sediment under irregular breaking waves were formulated to predict the profile evolution of a cohesive sediment beach with a layer of sand. The cohesive sediment is eroded by turbulence generated by wave energy dissipation caused by wave breaking and bottom friction. Sand released from the eroded sediment is transported onshore or offshore by wave action. The cohesive sediment erosion rate is increased by a thin mobile layer of sand and decreased by a thick sand layer. The complicated interactions of waves, sand and cohesive bottom were simplified and incorporated into an existing cross-shore numerical model. The model was compared with flume experiment data with measured till erosion rates on the order of 0.05 cm/h. The calibrated model was used to simulate the temporal change of the till erosion rate for a duration of 100 h. The scale effect was examined in hypothetical prototype tests of the same till with a length ratio of 1/4. The prototype 200-h simulations predicted much larger till erosion near the shoreline and sand deposition in the surf zone. The model will need to be compared with actual field data.
机译:公式化了固结粘性沉积物在不规则破碎波作用下的侵蚀过程,以预测含沙层的粘性沉积物滩的剖面演化。由于波浪破碎和底部摩擦引起的波浪能量耗散而产生的湍流侵蚀了粘性沉积物。从被侵蚀的沉积物中释放出来的沙子通过波浪作用被运送到岸上或海上。黏性沉积物的侵蚀速率通过薄薄的沙子移动层而增加,而通过厚薄的沙子层降低。简化了波浪,沙子和粘性底部的复杂相互作用,并将其合并到现有的跨岸数值模型中。将模型与水槽实验数据进行比较,测量的侵蚀速率约为0.05 cm / h。校准后的模型用于模拟持续100小时的耕作侵蚀速率的时间变化。在相同的假想原型试验中,直到长度比为1/4时,都检查了水垢效应。原型200小时的模拟预测,直到海岸线附近的侵蚀和海浪区的沙粒沉积将更大。需要将模型与实际现场数据进行比较。

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