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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Scour Depth at Bridges: Method Including Soil Properties. Ⅱ: Time Rate of Scour Prediction
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Scour Depth at Bridges: Method Including Soil Properties. Ⅱ: Time Rate of Scour Prediction

机译:桥梁冲刷深度:包括土壤特性的方法。 Ⅱ:冲刷时间的预测

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摘要

Scour of the soil by flowing water around bridge supports is the number one reason for bridge collapse. Predicting the depth of the scour hole is an integral part of bridge foundation design, as it impacts the depth of the piles. Indeed, the scour depth must be ignored in the vertical and horizontal resistance of the piles. This paper presents a method to predict the progression of the scour depth around bridge supports as a function of time when subjected to a velocity hydrograph. It also addresses the issue of layered soils. The equations make use of the commonly used water velocity and dimensions of the obstacle, but add a new and important component: the soil erosion function to characterize the degree of soil resistance to erosion. The equations apply to pier scour, contraction scour, and abutment scour. The predicted output is the scour depth as a function of time for a given velocity hydrograph and soil layer stratigraphy. A comparison between measured and predicted scour depth is presented, but more comparisons are necessary, particularly at full scale.
机译:在桥架周围流水冲刷土壤是造成桥坍塌的第一原因。预测冲孔的深度是桥梁基础设计不可或缺的一部分,因为它会影响桩的深度。实际上,在桩的垂直和水平阻力中必须忽略冲刷深度。本文提出了一种方法,当经受速度水文测量时,可以预测桥架周围冲刷深度随时间的变化。它还解决了分层土壤的问题。这些方程式利用了常用的水流速度和障碍物的尺寸,但增加了一个新的重要组成部分:土壤侵蚀功能,以表征土壤抗侵蚀的程度。这些方程式适用于码头冲刷,收缩冲刷和基台冲刷。对于给定的速度水文学和土壤层地层学,预测的输出是冲刷深度随时间的变化。给出了测得的和预测的冲刷深度之间的比较,但是还需要更多的比较,尤其是在满刻度下。

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