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A preliminary experimental study on the mechanism of local scour at pile groups in steady currents

机译:稳定电流桩基局部冲刷机理的初步试验研究

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Preliminary experiments of local scour around pile groups embedded in sandy soil are carried out under steady clear-water conditions. Four types of pile groups including the single pile, tandem arrangements, side-by-side arrangements and 3×3 arrangements of piles are considered. According to flow rate, water depth, and sediment condition, the pile spacing of tandem arrangements and side-by-side arrangements are designed as one, two, four and eight times the pile diameter, while that of 3×3 pile groups is designed as four times the pile diameter. It is observed that the interference of local scour between two piles decreases as the spacing increases for the case of side-by-side and tandem arrangements. When the pile spacing is large enough, the two piles behave as two isolated piles. For the case of 3 × 3 pile groups, the maximum local scour depth occurs at the front piles and the shape of the scour-hole varies with different pile spacing. It is also observed in this study that the scoured material from the front piles will be trapped inside the scour hole of the back ones, which mitigates the scour around the back piles. The complex interaction among piles are analyzed, and the pile group effect of scour is proposed to explain the observations in the present study.
机译:在含沙土中堆积的局部冲刷的初步实验在稳定的透明水条件下进行。考虑了四种类型的桩基,包括单桩,串联布置,并排布置和3×3桩的布置。根据流速,水深和沉积物条件,串联布置和并排布置的桩间距设计为桩直径的一个,两个,四倍和八倍,而设计3×3桩组的设计桩直径四倍。观察到,随着边缘和串联布置的情况的间距增加,局部冲刷的干扰减小随着间隔和串联布置的情况而降低。当桩间距足够大时,两堆桩就像两个隔离的桩一样。对于3×3桩基的情况,在前桩处发生最大局部冲刷深度,冲泡孔的形状随不同的桩间距而变化。在这项研究中也观察到,来自前桩的冲泡材料将被捕获在背部的冲击孔内,这会减轻背部桩周围的冲刷。分析了桩之间的复杂相互作用,提出了冲刷的桩基效应来解释本研究中的观察结果。

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