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Temporal scour evolution at bridge piers: effect of wood debris roughness and porosity

机译:桥墩的时空冲蚀演变:木屑粗糙度和孔隙率的影响

摘要

Large wood debris transported by floods affects the scour morphology at bridge piers, thus increasing the bridge failure potential. The characteristic size and shape of the riparian vegetation includes various roughness and permeability conditions of the debris surface. The interaction between two-dimensional flow and rough debris accumulations increases the shear stress, the turbulence and consequently affects the scour evolution process at bridge piers. An experimental study on the bridge pier clear-water scour evolution in the presence of wood debris was conducted at the PITLAB research centre, University of Pisa, Italy. A debris accumulation is characterized by roughness, shape and porosity. Flow intensities range from 65 to 100% of the threshold velocity and included up to 18% of the total flow area. Flow depths were varied from 2.67 to 5.67 times the pier diameter. The effects of wood debris roughness and porosity were analysed in terms of scour temporal evolution and scour morphology.
机译:洪水运送的大块木屑会影响桥墩的冲刷形态,从而增加了桥梁破坏的可能性。河岸植被的特征尺寸和形状包括碎片表面的各种粗糙度和渗透性条件。二维流动与粗糙碎屑堆积之间的相互作用增加了剪应力,湍流,并因此影响了桥墩冲刷过程。在意大利比萨大学的PITLAB研究中心,对存在木屑的桥墩清水冲刷演化进行了实验研究。碎片堆积的特征是粗糙度,形状和孔隙率。流动强度的范围为阈值速度的65%至100%,并且占总流动面积的18%。流动深度在码头直径的2.67到5.67倍之间变化。根据冲刷时间演变和冲刷形态分析了木屑粗糙度和孔隙率的影响。

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  • 作者

    Pagliara S; Carnacina I;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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