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Soil-Cement Screw Pile: Alternative Pile for Low- and Medium-Rise Buildings in Soft Bangkok Clay

机译:土壤 - 水泥螺钉桩:软曼谷粘土中低层建筑物的替代桩

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Bangkok clay is a soft marine clay with high water content and low bearing capacity. Bored piles installed by the dry process commonly are used for low- to medium-rise buildings in the metropolis. However, the installation of bored piles is time consuming and labor intensive, and requires skillful supervision, quality control, and the disposal of excavated spoils. The soil-cement screw pile (SCSP), a composite piling system which incorporates a soil-cement column (SCC) and a screw pile (SP), is an innovative alternative piling solution. This paper presents the ultimate load, time and cost analysis, and suggested effective design method for this piling system in soft Bangkok clay. The load capacity predictive equations for the SCSP were proposed and validated based on the field static pile load test results. These equations were used successfully for the installation of this piling system in construction projects on soft Bangkok clay. The unit cost of the SP was found to be the highest, and the unit cost of the SCSP and bored pile was found to be the lowest and almost similar. As a result, the application of the full SCSP and bored pile is more economical than the partial SCSP and SP under the same ultimate load design. However, the partial SCSP and SP have more advantages in terms of construction time and are suitable for a time-constrained project. The SCSP has higher efficiency, productivity, and competitiveness than the traditional dry-process bored pile. The outcome of this research will lead to the development of guidelines and a code of practice for SCSP in soft clay, which will be useful for the construction industry, particularly pertaining to the scheduling and cost performance of SCSPs in construction projects. (c) 2020 American Society of Civil Engineers.
机译:曼谷粘土是一种柔软的海洋粘土,水含量高,承载力低。由干法安装的钻孔桩通常用于大都市中的低至中层建筑物。然而,钻孔桩的安装是耗时和劳动密集的,需要熟练的监督,质量控制,以及挖掘的破坏的处置。土壤 - 水泥螺钉桩(SCSP),一种包含土壤 - 水泥柱(SCC)和螺钉桩(SP)的复合打桩系统,是一种创新的替代打桩解决方案。本文介绍了柔软曼谷粘土中这个打桩系统的最终负载,时间和成本分析,并提出了有效的设计方法。基于现场静态桩负载测试结果,提出和验证了SCSP的负载容量预测方程。这些方程式用于安装在软曼谷粘土上的建筑项目中的这个限位系统。发现SP的单位成本是最高的,SCSP和无聊桩的单位成本被发现是最低和几乎相似的。结果,在相同的最终负载设计下,全SCSP和无聊桩的应用比部分SCSP和SP更经济。然而,部分SCSP和SP在施工时间方面具有更多的优势,并且适用于时间约束项目。 SCSP具有更高的效率,生产力和竞争力,而不是传统的干工艺钻孔桩。该研究的结果将导致软粘土中SCSP的准则和练习准则,这将对建筑业有用,特别是与建筑项目中SCSP的调度和成本表现有关。 (c)2020年美国土木工程师协会。

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