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Numerical and experimental studies of pressure-controlled cavity expansion in completely decomposed granite soils of Hong Kong

机译:香港完全分解的花岗岩土中压力控制型腔膨胀的数值和实验研究

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摘要

Compaction grouting is the injection of a viscous grout into a soil under high pressure, which then den-sifies the surrounding soil by reducing void space. Laboratory and field tests of compaction grouting have been carried out. In this paper, a numerical model is used to simulate the compaction grouting process with the primary purpose of investigating relationships among various control parameters, such as injection pressure, void ratio and excess pore water pressure at various radial distances from the injection point. The compaction process is treated as a cavity expansion process in the numerical simulation. The soil is modelled with an elasto-plastic Mohr-Coulomb model using the commercial finite element program ABAQUS. In addition to numerical simulations, pressure-controlled cavity expansion laboratory tests were carried out on completely decomposed granite (CDG) soil specimens. Data collected from laboratory tests are compared with the finite element simulation to validate the finite element analyses. Factors that control the compaction process, such as the coefficient of earth pressure (K), initial void ratio, number of loading cycles and effective confining pressure, are explored in the numerical simulations.
机译:压实灌浆是在高压下将粘性灌浆注入土壤中,然后通过减少空隙空间使周围的土壤致密化。压实灌浆的实验室和现场测试已经进行。本文使用数值模型来模拟压实灌浆过程,其主要目的是研究各种控制参数之间的关系,例如在距注入点不同径向距离处的注入压力,孔隙率和过量孔隙水压力。在数值模拟中,压实过程被视为空腔膨胀过程。使用商业有限元程序ABAQUS,通过弹塑性Mohr-Coulomb模型对土壤进行建模。除数值模拟外,还对完全分解的花岗岩(CDG)土壤标本进行了压力控制型腔膨胀实验室测试。将实验室测试收集的数据与有限元模拟进行比较,以验证有限元分析。在数值模拟中探索了控制压实过程的因素,例如土压力系数(K),初始空隙率,加载周期数和有效围压。

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