Laboratory Study of Grouting Method to Improve Loose Sand Against Liquefaction

Cindarto Lie, P. Rahardjo, I. Sadisun
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Abstract

Liquefaction is a phenomenon when soil behaves like liquid during earthquake, and only occurs in saturated loose fine sand with grain size ranging from 0.2 to 0.02 mm. Liquefaction can be devastating, causing failure and deformation to buildings, roads, and bridges. Thus, research study on the application of grouting method for improving liquefiable fine sand in the laboratory is carried out. Grouting is a soil improvement method that injects cementing agent into a soil mass. After the grout has solidified, the soil density and consistency of the soil will improve. This research proves, mathematically and experimentally, that grouting can improve the density and consistency of liquefiable sand, thus reducing the liquefaction potential. Grouting liquefiable saturated sand basically compacts the soil, leading to consolidation as soil pore-water is dissipated during the grouting process. It is found that the volume of grout per unit volume of soil mass treated is directly proportional with the reduction of void ratio and increase in soil density.
松砂抗液化注浆方法的室内研究
液化是一种土壤在地震中表现为液体的现象,只发生在粒径在0.2 ~ 0.02 mm的饱和松散细砂中。液化可能是毁灭性的,会导致建筑物、道路和桥梁的破坏和变形。因此,在实验室开展了注浆法改善可液化细砂的应用研究。注浆是将胶结剂注入土体中的一种土壤改良方法。浆液固化后,土的密度和稠度都会提高。通过数学和实验证明,注浆可以提高可液化砂的密度和稠度,从而降低液化潜力。注浆液化饱和砂主要是压实土体,注浆过程中土体孔隙水耗散,导致土体固结。结果表明:处理后的单位体积土体的浆液体积与孔隙比的减小和土体密度的增大成正比;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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