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首页> 外文期刊>American Journal of Civil Engineering and Architecture >The Investigation of Effective Parameters on the Stability of Concrete Gravity Dams with Case Study on Folsom, Blue Stone, and Pine Flat Dams
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The Investigation of Effective Parameters on the Stability of Concrete Gravity Dams with Case Study on Folsom, Blue Stone, and Pine Flat Dams

机译:以Folsom,Blue Stone和Pine Flat Dam为例研究混凝土重力坝稳定性的有效参数

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In this research, the effective parameters in stability of concrete gravity dams in the form of case study on three important dams: Blue stone; Folsom; and Pine Flat, are investigated. Typically, cognition and understanding of effective parameters in stability and knowing the role of each them, in designing new dams, could be very helpful. Concrete gravity dams (which are surveyed in this research) have their strength and stability because of their weight. The shape of their section are triangle and commonly, The base of the triangle is greater than the dam is stable, the more stable dam is. Also, in this investigation we are going to study the horizontal displacement called sliding of dam’s bottom, in contact with foundation by ABAQUS software. The sliding displacement has no considerable change in each of the three nodes on heel and toe, and also in middle part of dam, and eventually is equal in each three and all parts of the dam’s bottom and foundation. With choosing three nodes on the dam’s bottom and similar nodes on the foundation, and with differentiating horizontal displacements of these nodes with each other, the relative displacements of dam are obtained. With using these displacements acquired from ABAQUS software in RS-DAM software, we show them as time series graph and relative displacement. Whenever this graph has a jump with the increase of earthquake PGAs (end of the graph moves away from the starting point of it), dams is considered as unstable.
机译:本研究以三座重要水坝为例,研究了混凝土重力坝稳定的有效参数。福尔松和Pine Flat被调查。通常,对有效参数的稳定性的认识和理解以及了解每个参数在设计新水坝中的作用可能会非常有帮助。混凝土重力坝(在本研究中进行了调查)由于其重量而具有强度和稳定性。它们的截面形状通常为三角形,三角形的底面大于坝坝的稳定程度,坝坝越稳定。另外,在这项调查中,我们将研究通过ABAQUS软件与基础接触的大坝底部滑动的水平位移。滑动位移在后跟和脚趾的三个节点中的每一个以及坝的中部都没有明显变化,最终在坝的底部和基础的每三个及所有部分中均相等。通过选择大坝底部的三个节点和地基上的类似节点,并通过区分这些节点的水平位移,可以获得大坝的相对位移。通过使用从RS-DAM软件中的ABAQUS软件获得的这些位移,我们将它们显示为时间序列图和相对位移。只要该图随着地震PGA的增加而跳变(图的末端偏离其起点),则认为大坝是不稳定的。

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