首页> 外文学位 >Prediction of scour depth versus time for bridge piers in cohesive soils in the case of multi-flood and multi-layer soil systems.
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Prediction of scour depth versus time for bridge piers in cohesive soils in the case of multi-flood and multi-layer soil systems.

机译:在多洪水和多层土壤系统的情况下,预测粘性土中桥墩的冲刷深度与时间的关系。

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摘要

Scour is the physical or chemical attack of flowing water which excavates and carries away material from stream beds and banks. Hydraulic structures such as bridge piers and abutments placed in the channel cause changes in the flow pattern such as acceleration, the formation of vortices, and scour around the structure. Channel scour, especially bridge pier scour, is the leading cause of bridge failures.;The scour phenomenon in cohesive soils is much different than that in non-cohesive soils. Scour in cohesive soils is much slower and more dependent on soil properties than that in non-cohesive soils. Applying the equations for non-cohesive soils to cohesive soils regardless of time appears to be overly conservative. Therefore, the scour analysis method for cohesive materials needs to consider the time effect and soil properties as well as hydraulic parameters.;The present study is based on the SRICOS method which was developed to predict scour depth z versus time t curve at bridge piers for a constant velocity and for a uniform soil. The SRICOS method was improved so that it can handle multi-flood and multi-layer soil systems, verified for 10 cases of full-scale scour measurements, and proposed as a meaningful and economic method for foundation design and maintenance. In addition, the simple SRICOS method was also developed. This method is very simple to use for obtaining the pier scour depth by hand calculations and is suggested as a useful method for design of bridge pier foundations.
机译:冲刷是流动水的物理或化学侵蚀,它从河床和河床中挖出并带走物料。放置在通道中的水工结构(例如桥墩和桥台)会导致流动模式发生变化,例如加速度,涡旋的形成以及在结构周围的冲刷。河道冲刷,特别是桥墩冲刷,是造成桥梁破坏的主要原因。粘性土壤的冲刷现象与非粘性土壤的冲刷现象大不相同。与非粘性土壤相比,粘性土壤中的冲刷要慢得多,并且对土壤性质的依赖性更大。将非粘性土的方程应用于粘性土而不考虑时间似乎过于保守。因此,对粘性材料的冲刷分析方法需要考虑时间效应和土壤特性以及水力参数。本研究基于SRICOS方法,该方法用于预测桥墩冲刷深度z与时间t曲线。恒定的速度和均匀的土壤。对SRICOS方法进行了改进,使其能够处理多洪水和多层土壤系统,已验证了10例满量程冲刷情况,并被认为是一种有意义且经济的基础设计和维护方法。此外,还开发了简单的SRICOS方法。该方法非常容易用于通过手工计算获得桥墩冲刷深度,并被建议作为桥梁桥墩基础设计的有用方法。

著录项

  • 作者

    Kwak, Kiseok.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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