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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Design of Jet Grouted Excavation Bottom Plugs
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Design of Jet Grouted Excavation Bottom Plugs

机译:旋挖开挖底塞的设计

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摘要

A methodology for cost-effective design of jet grouted water-sealing bottom plugs is presented in this paper. These massive barriers, made of partially overlapping jet grouted columns, are required to ensure temporary waterproofing to excavation areas and adequate uplift resistance against water loads. Therefore, the proposed calculation procedure simultaneously focuses on the structural performance and continuity of the plug. The design may be optimized by considering the possibility of reducing column length, performing injections only in the lower part of the.plug, and leaving the upper part of the plug untreated. The reduction in column length may then result in a very slender slab, and a structural check has to be performed to avoid tension fracturing or overall structural collapse. Additionally, in spite of strict controls, jet grouted columns are never perfectly cylindrical or exactly aligned along their prescribed position, and thus the plug may present imperfections. Statistical evaluation of defects with experimental data from different field trials and their simulation with the Monte Carlo method shows that the imperfections are less relevant for the structural performance of the plug, but must be carefully taken into account in the analysis of seepage. Imperfections have been thus introduced in the structural analysis by means of partial factors evaluated from probabilistic analysis. The latter calculation provides a rule to control the effects of incomplete watertightness of the plug. The introduced relations are expressed with design charts.
机译:本文介绍了一种经济高效的喷射灌浆水封底塞设计方法。这些巨大的障碍物是由部分重叠的喷射灌浆柱制成,需要确保临时防水到挖掘区域并具有足够的抗水负荷能力。因此,所提出的计算程序同时关注于塞子的结构性能和连续性。通过考虑减少色谱柱长度的可能性,仅在塞子的下部进行注入以及不处理塞子的上部的可能性,可以优化设计。柱长的减少可能会导致板坯非常细长,必须进行结构检查以避免拉伸断裂或整体结构塌陷。另外,尽管进行了严格的控制,但喷射灌浆的柱子永远不会完全圆柱形或沿其规定位置精确对准,因此塞子可能会出现缺陷。使用来自不同现场试验的实验数据对缺陷进行统计评估,并使用蒙特卡洛方法进行模拟,结果表明,缺陷与塞子的结构性能不太相关,但在渗流分析中必须谨慎考虑。因此,通过概率分析评估的局部因素已将缺陷引入结构分析中。后面的计算提供了一个规则来控制塞子不完全水密性的影响。引入的关系用设计图表示。

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