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Armourstone revetments: Will standard design criteria prevent failure?

机译:装甲石护岸:标准设计标准可以防止失败吗?

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摘要

Bank stabilization structures are used to prevent the loss of valuable land within the urban environment and the decision for the type of structure used depends on the properties of the stream. In the urban areas of Southern Ontario there is a preference for the use of armourstone blocks as bank stabilization. The armourstone revetment is a free standing stone structure with large blocks of stone layered vertically and offset from one another. During fieldwork at Forty Mile Creek in Grimsby, Ontario armourstone failure was identified by the removal of two stones within one column from the wall. Since the footer stones were still in place, toe scour was eliminated as a cause of failure.; Through theoretical, field, and experimental work the process of suction has been identified as a mode of failure for the armourstone wall and the process of suction works similarly to quarrying large blocks of rock off bedrock streambeds. The theory of lateral suction has previously not been taken into consideration for the design of these walls. The physical and hydraulic evidence found in the field and studied during experimental work indicate that the armourstone wall is vulnerable to the process of suction.; The forces exerted by the flow and the resistance of the block determine the stability of the armourstone block within the wall. The design of the armourstone wall, high surface velocities, and short pulses of faster flowing water within the profile could contribute to armourstone failure by providing the forces needed for suction to occur, therefore adjustments to the design of the wall should be made in order to limit the effect.
机译:堤岸稳定结构用于防止城市环境内宝贵土地的流失,所用结构类型的决定取决于河流的性质。在安大略省南部的城市地区,人们首选使用装甲石块来稳定河岸。装甲石护岸是一种独立的石材结构,其上有大块垂直层叠的石块,并且彼此错开。在格里姆斯比(Grimsby)的40英里小溪(Forty Mile Creek)进行野外作业期间,安大略省的装甲石破损是通过从墙体的一列中移走了两块石子而发现的。由于页脚石仍在原位,因此消除了脚趾冲刷的故障。通过理论,现场和实验工作,吸力过程已被确定为装甲岩墙的一种破坏方式,吸力过程与从基岩河床中开采大块岩石相似。这些壁的设计以前没有考虑过横向吸力理论。在现场发现并在实验工作中进行研究的物理和水力证据表明,装甲石墙很容易受到抽吸过程的影响。流动所施加的力和砌块的阻力决定了壁上的电石砌块的稳定性。装甲墙的设计,较高的表面速度以及轮廓内较快流动的水的短脉冲可能会通过提供发生吸力所需的力而导致装甲墙的损坏,因此,应对墙的设计进行调整,以便限制效果。

著录项

  • 作者

    Van Riezen, Rhonneke Dyann.;

  • 作者单位

    Brock University (Canada).;

  • 授予单位 Brock University (Canada).;
  • 学科 Geology.
  • 学位 M.Sc.
  • 年度 2005
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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