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垂直玻璃纤维微型桩作为土壤增强元件

Vertical Fiberglass Micropiles as Soil-Reinforcing Elements.

作者信息

Sabri Mohanad Muayad Sabri, Vatin Nikolai Ivanovich, Nurmukhametov Renat Rustamovich, Ponomarev Andrey Budimirovich, Galushko Mikhail Mikhailovich

机构信息

Peter the Great St. Petersburg Polytechnic University, 195251 Saint Petersburg, Russia.

Saint Petersburg State University, 190999 Saint Petersburg, Russia.

出版信息

Materials (Basel). 2022 Apr 1;15(7):2592. doi: 10.3390/ma15072592.

Abstract

This article is dedicated to developing a ground improvement technique using vertically oriented reinforcement elements prefabricated utilizing fiberglass pultruded pipe and helical shape wideners at the bottom toe. Structures of the prefabricated helical micropiles varied by the length and cross-section area introduced into the soil massive as reinforcing bearing elements. The effect of the reinforcements geometry variation was investigated through a reinforcement factor (), based on which a calculation method for measuring settlement of reinforced soil has been previously developed Full-scale field plate load tests were performed before and after reinforcing the soil to investigate the changes in the soil stiffness after the reinforcement process. Comparative analysis between the reinforced and reference soft sandy soil indicates an average increase in the deformation properties of the fiber reinforced soils by 8%, 30%, 63% at the applied pressures of 100, 300, and 550 kPa, respectively. The influence of the fiber reinforced polymers (FRP) geometrical properties on the final composite settlement was determined. A comparative analysis of the calculated and the actual plate load tests results reveals that the previously proposed settlement calculation method is adequate for further development.

摘要

本文致力于开发一种地基处理技术,该技术使用底部带有玻璃纤维拉挤管和螺旋形扩径器预制的竖向加筋元件。预制螺旋微型桩的结构因作为加筋承载元件插入土体中的长度和横截面积而异。通过一个加筋系数研究了加筋几何形状变化的影响,在此基础上,先前已开发出一种测量加筋土沉降的计算方法。在加固土体前后进行了现场足尺平板载荷试验,以研究加固过程后土体刚度的变化。加筋软砂土与参考软砂土之间的对比分析表明,在100、300和550 kPa的施加压力下,纤维加筋土的变形特性分别平均提高了8%、30%和63%。确定了纤维增强聚合物(FRP)几何特性对最终复合沉降的影响。计算结果与实际平板载荷试验结果的对比分析表明,先前提出的沉降计算方法足以进行进一步开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fff/9000301/7a96e52114b3/materials-15-02592-g001.jpg

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