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首页> 外文期刊>Canadian Geotechnical Journal >Observed performance of three adjacent 48 m depth concrete diaphragm wall panels in silty soils
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Observed performance of three adjacent 48 m depth concrete diaphragm wall panels in silty soils

机译:观察到三个相邻的48米深度混凝土隔膜墙板在粉质土壤中的性能

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摘要

The performance of three adjacent 48 m depth concrete diaphragm wall panels in silty soils is measured throughout the complete process of the wall installation including trench excavation, trench concreting, and concrete hardening. The analysis of the field measurement data shows that the ground movement induced by the wall installation is a function of construction activities. The maximum lateral movement occurs during the trench excavation. The trench concreting reduces the lateral movement. Field measurement at the end of wall installation may not catch the value of the maximum lateral movement. The ground settlement continues to increase during the complete process of panel installation, but with a decreasing rate. Roughly 90% of the settlement occurs during the trench excavation. The ground movement is also closely related to the properties of subsurface strata. The weak superficial fill materials sustain high disturbance, which consequently results in relatively large ground movement. With current engineering means and methods and good construction workmanship, the ground movement can be well controlled. In the current project, the maximum lateral ground movement was controlled within 2.0 cm and the maximum settlement was controlled within 0.05% of trench depth.
机译:在包括横轴挖掘,沟槽混凝土和混凝土硬化的墙壁安装的整个过程中,在整个墙壁安装过程中测量了三个相邻的48米深度混凝土隔膜墙板的性能。对现场测量数据的分析表明,墙壁安装引起的地面运动是施工活动的函数。在沟槽挖掘期间发生最大横向运动。沟槽混凝土减少了横向运动。墙壁安装末端的场测量可能不会捕获最大横向运动的值。在面板安装的完整过程中,地面定居点继续增加,但率降低。在沟槽挖掘期间,大约90%的定居点发生。地面运动也与地下地层的性质密切相关。弱浅表填充材料维持高扰动,从而导致相对较大的地面运动。通过目前的工程手段和方法和良好的建筑工作,可以很好地控制地面运动。在目前的项目中,将最大横向接地运动控制在2.0厘米内,最大沉降在沟槽深度的0.05%以内。

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