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Enhancing discharge of spoil to mitigate disturbance induced by horizontal jet grouting in clayey soil: Theoretical model and application

机译:增强弃土排放,减轻水平注浆在黏性土壤中的扰动:理论模型与应用

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The installation of jet grouting columns in fine-grained soils can cause significant disturbances to nearby structures, thereby undermining the reliability of this powerful technology. The high-pressure injection of large volumes of grouting materials coupled with the limited exhaust capacity of the boreholes often cause ground surface upheavals and lateral displacements. The problem appears particularly for horizontal columns injected at relatively shallow depths and in fine-grained soils. Systems employed to control the pressure in the injection cavity and fasten the spoil discharge represent an effective method to mitigate the ground disturbance. However, although the principle is well understood, there is no reliable analytical solution to predict ground movements caused by horizontal jet grouting and the resulting spoil discharge. This paper presents a simple calculation scheme to estimate ground movements induced by horizontal jet grouting. The method considers the jetting parameters, soil properties, and volume of discharged spoil. Further, a new equation is derived to calculate the radius of the plastic zone considering the discharged spoil. The proposed method is applied to interpret the observations obtained in two real case studies. The comparison of the calculation results and measured data confirms the effectiveness of the proposed method.
机译:在细粒土壤中安装喷射灌浆柱可能会对附近的结构造成严重干扰,从而削弱这项强大技术的可靠性。大量注浆材料的高压注入,加上钻孔有限的排气能力,经常会引起地表动荡和横向位移。对于在相对浅的深度和细粒土壤中注入的水平色谱柱,该问题尤其明显。用于控制注入腔中的压力并固定废料排放的系统是减轻地面干扰的有效方法。然而,尽管原理得到了很好的理解,但是尚没有可靠的分析解决方案来预测由水平射流灌浆和所产生的弃渣引起的地面运动。本文提出了一种简单的计算方案,以估算由水平喷射注浆引起的地面运动。该方法考虑了喷射参数,土壤特性和排出的弃渣量。此外,推导出一个新的方程式,以考虑排放的弃渣来计算塑性区的半径。所提出的方法用于解释在两个实际案例研究中获得的观察结果。计算结果和实测数据的比较证实了该方法的有效性。

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