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Lateral earth pressures acting on circular shafts considering soil-structure interaction

机译:考虑土-结构相互作用的横向土压力作用在圆轴上

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Nowadays, there is a significant demand on developing and expanding the existing infrastructure which necessitates the implementation of fast and cost effective construction methods such as the secant pile walls. The secant pile walls constructed in a circular plan layout to form a vertical shaft provide unique advantages such as compression ring behaviour. Compression rings act as a single-unit system in resisting lateral earth pressure and converting loads from all directions to compressive forces which can be resisted only by low concrete strength. Secant pile walls require stringent drilling tolerances to be achieved in order to behave as a compression ring and to perform as an effective groundwater cut-off wall. This paper presents a parametric study that investigates various aspects of the behaviour of circular shafts constructed using secant pile walls.The aspects that are studied include the identification of the magnitude and distribution of earth pressures exerted on circular shafts by the retained material. The distribution of surcharge pressures on the shaft walls is also studied. The results showed that the surcharge pressures on the wall increased with increasing width of surcharge area; for example, the maximum surcharge pressure increased by at least 60% when surcharge width increased from W = 3 m to W = 48 m. In addition, the results indicated a decrease of the maximum surcharge pressure on the wall by almost 22% when shaft radius decreased from R = 5 m to R = 3 m for Soil 1. Unlike what is observed in plane strain conditions, distance between the surcharge and shaft wall was seen to have a small effect on the magnitude of maximum pressures. The results also showed that the theoretical estimate of pressures underestimated the calculated values at larger depths and that the horizontal extent of the spread of pressure around the shaft was significantly influenced by the type of soil as well as width of surcharge. The outcomes of this study address practical design concerns and are considered to be of interest to those involved in design and construction of vertical shafts.
机译:如今,对开发和扩展现有基础结构有大量需求,这需要实施快速且经济高效的施工方法,例如割线桩墙。以圆形平面布局构造以形成垂直竖井的割线桩墙具有独特的优势,例如压缩环性能。压环是一个单系统,可抵抗侧向土压力并将所有方向的载荷转换为只能由低混凝土强度抵抗的压缩力。正割桩壁需要达到严格的钻孔公差,才能起到压缩环的作用,并起到有效的地下水截流墙的作用。本文提供了一个参数研究,研究了使用割线桩壁构造的圆轴行为的各个方面。研究的方面包括识别保留材料施加在圆轴上的土压力的大小和分布。还研究了竖井壁上附加压力的分布。结果表明,随着附加区域宽度的增加,壁上的附加压力增大。例如,当附加宽度从W = 3 m增加到W = 48 m时,最大附加压力增加至少60%。此外,结果表明,当土壤1的轴半径从R = 5 m减小到R = 3 m时,壁上的最大附加压力减小了近22%,这与平面应变条件下观察到的不同。附加费和竖井壁对最大压力的大小影响很小。结果还表明,在较大深度处,压力的理论估计值低估了计算值,并且竖井周围压力分布的水平范围受土壤类型和附加费用宽度的影响很大。这项研究的结果解决了实际的设计问题,并被那些涉及竖井设计和建造的人们所关注。

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