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Experimental study on 18000 kN·m ultra high energy level dynamic consolidation on large thickness gravel foundation

机译:18000 kN·M超高能平动态固结对大厚度砾石基础的实验研究

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A new airport is building at somewhere in northern China. The airport is located on an artificial island which is filled with gravel. Because the foundation is filled at one time and the thickness exceeds 22m, it should be consolidated. The designer supposed to use dynamic compaction method. The dynamic compaction energy may exceeds 15000kN·m which is called ultra high energy level dynamic consolidation. However, the research of ultra high energy level dynamic consolidation and engineering examples available for reference are very few. Therefore, field test is necessary before formal construction to determine the reinforcement energy level and reinforcement effect. A series of dynamic compaction field tests with different energy levels were carried out. In this paper, dynamic compaction field tests of 18000kN·m was introduced. It the test, flat load test was carried out to determine the bearing capacity of reinforced foundation, and deep settlement monitoring, layered settlement monitoring, ultra-heavy dynamic penetration test and multi-channel transient surface wave test were carried out before and after the consolidation to reflect the dynamic compaction reinforcement effect. The field test result shows that after dynamic consolidation of 18000kN·m, the characteristic value of foundation bearing capacity is much larger than 150kpa, which meets the design requirements. Deep settlement monitoring, layered settlement monitoring, ultra-heavy dynamic penetration test and multi-channel transient surface wave test all can reflect the dynamic compaction reinforcement effect, and the monitoring results are very similar. After dynamic consolidation of 18000kN·m, the reinforcement effect is not obvious in the range of 4m on the surface layer of the foundation, but obvious in the range of 4m to 14m, and still exists at 22m depth.
机译:新机场正在中国北方的某个地方建造。机场位于人工岛上,装满了砾石。由于填充了一个时间,并且厚度超过22米,它应该合并。设计师应该使用动态压缩方法。动态压实能量可能超过15000kn·m,其被称为超高能平动态整合。然而,超高能平动态固结和工程示例的研究非常少。因此,在正式施工之前需要现场测试,以确定加强能级和加固效果。进行了一系列具有不同能量水平的动态压实场测试。本文介绍了18000kN·M的动态压实场测试。测试,扁平载荷试验进行了加强基础的承载力,并在整合之前和之后进行了深度沉降监测,分层沉降监测,超重型动态渗透测试和多通道瞬态表面波试验反映动力压实强化效果。现场测试结果表明,在18000kN·M的动态整合后,基础承载力的特征值远远大于150kPa,符合设计要求。深度沉降监测,分层沉降监测,超重型动态渗透试验和多通道瞬态表面波试验都可以反映动态压实强化效果,监测结果非常相似。在18000kN·M的动态整合之后,基础表面层的4米范围内的加固效果在4米的范围内,但明显的范围为4米至14米,仍处于22米深度。

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