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Effective improvement depth for ground treated with rapid impact compaction

机译:快速冲击压实地面的有效改善深度

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摘要

Ground improvement has been used on many construction sites to densify granular material, in other word, to improve soil properties and reduce potential settlement. This paper evaluates the efficiency of rapid impact compaction (RIC), which is an improvement on the process of deep dynamic compaction, in ground improvement. In this technique, ground improvement is achieved by impacting the ground with a 7 tone weight, 35 times/min, and drop height of 0.8 m at 2.5 m C/C square grid spacing. Method evaluation is made by comparing the tip resistance of pre-treatment and post treatment cone penetrometer test (CPT) soundings. However, the effective improvement depths and the factors affecting the depth are discussed, and a formula for calculating the effective depth is presented. Vibration monitoring was conducted to check the effect of the vibrations born by RIC machine on the adjacent structures to assess how much the process is considered environmentally friendly and accordingly the challenging locations it can reach especially in the urban areas. It was found that the RIC succeeded in achieving the required degree of improvement, improvement depth depends on soil properties and energy applied; and the effective improvement depth formula presented by this study is true when the soil is granular and homogeneous with depth. Vibrations by RIC machine were within allowable limits and with controlled effect on the adjacent structures.
机译:在许多建筑工地上已进行了地面改良,以使粒状材料致密,换句话说,是改善土壤特性并减少潜在的沉降。本文评估了快速冲击压实(RIC)的效率,这是对深部动力压实过程中地面改进的一种改进。在此技术中,通过以2.5立方厘米/平方格的网格间距以7音重,35次/分钟的撞击高度和0.8 m的跌落高度冲击地面,从而实现了地面改善。方法的评估是通过比较治疗前和治疗后锥形针入度计测试(CPT)测深的尖端阻力进行的。然而,讨论了有效改善深度和影响深度的因素,并提出了计算有效深度的公式。进行了振动监测,以检查RIC机器产生的振动对相邻结构的影响,以评估该过程对环境友好的程度,从而评估该过程可到达的挑战性位置,尤其是在城市地区。发现RIC成功达到了所需的改良程度,改良深度取决于土壤性质和所施加的能量。当土壤是颗粒状且深度均匀时,本研究提出的有效改善深度公式是正确的。 RIC机器的振动在允许的范围内,并对相邻结构产生可控的影响。

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