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首页> 外文期刊>Advances in civil engineering >Consolidation Effect of Prefabricated Vertical Drains with Different Lengths for Soft Subsoil under Vacuum Preloading
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Consolidation Effect of Prefabricated Vertical Drains with Different Lengths for Soft Subsoil under Vacuum Preloading

机译:真空预加载下软底土不同长度的预制垂直排水的合并效果

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摘要

The application of vacuum preloading to prefabricated vertical drains (PVDs) with different lengths is widely used in practical engineering to investigate their consolidation at the same depths of even and multilayer subsoils from the seabed. In a laboratory, model experiment was conducted using even subsoil and embedded PVDs with lengths of 0.6 and 1.2?m. The obtained results showed that in the even subsoil, the 1.2?m PVDs maintained a higher vacuum pressure in the shallow layer and demonstrated better consolidation behavior as compared to those of the 0.6?m PVDs. In the upper subsoil layer, the average vane shear strengths of these two systems increased to 18.2 and 22.6?kPa, respectively. The degree of consolidation of the upper subsoil layers in the two model experiments calculated from the pore water pressures under boundary drainage conditions were 51% and 68%, respectively. For practical verification purposes, similar experiments were conducted for multilayer subsoil by inserting PVDs with lengths of 6 and 15?m into different test sites. As a result, the vane shear strengths of the upper 6?m subsoil layers increased to 26.3 and 33?kPa, while the degree of consolidation were 72.1% and 80.9%, respectively, although some irregularities were observed at different depths.
机译:真空预加载到预制的垂直漏极(PVDS)具有不同长度的垂直漏极(PVDS)被广泛用于实际工程中,以研究其在海底的同一深度和多层底层的均匀深处的整合。在实验室中,使用甚至亚底土进行模型实验,并嵌入PVDS的长度为0.6和1.2μm。所得结果表明,在均匀的底层中,1.2μmPVDS在浅层中保持较高的真空压力,与0.6μmPVDS相比,显示出更好的合并行为。在上部底层层中,这两个系统的平均叶片剪切强度分别增加到18.2和22.6?KPA。从边界排水条件下的孔隙水压力计算的两种模型实验中,上层单层的固结程度分别为51%和68%。出于实际验证目的,通过将L长度为6和15Ωm的PVDS插入不同的试验位点来对多层底土进行类似的实验。结果,上部6?M底土层的叶片剪切强度增加到26.3和33μm≤kPa,而固结程度分别为72.1%和80.9%,尽管在不同深度观察到一些不规则性。

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