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年廷凯, 水伟厚, 李鸿江, 杨庆, 王玉立. 沿海碎石回填地基上高能级强夯系列试验对比研究[J]. 岩土工程学报, 2010, 32(7).
引用本文: 年廷凯, 水伟厚, 李鸿江, 杨庆, 王玉立. 沿海碎石回填地基上高能级强夯系列试验对比研究[J]. 岩土工程学报, 2010, 32(7).
Field tests of high energy dynamic compaction on foundation backfilled by crushed stone in coastal area[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(7).
Citation: Field tests of high energy dynamic compaction on foundation backfilled by crushed stone in coastal area[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(7).

沿海碎石回填地基上高能级强夯系列试验对比研究

Field tests of high energy dynamic compaction on foundation backfilled by crushed stone in coastal area

  • 摘要: 针对沿海下卧软弱夹层、高地下水位的厚层碎石回填地基,开展了3个试验区的强夯系列试验与对比研究。试验区A:14000,10000和8000 kN·m能级单点夯试验;相同能级(6000 kN·m)、不同压强夯锤对比试验,即34 kPa(18 t),50 kPa(25 t)和90 kPa(46 t)夯锤单点夯。试验区B: 12000 kN·m能级强夯群夯试验。试验区C:15000 kN·m能级强夯群夯试验。通过现场圆锥动力触探试验、标准贯入试验与钻孔取样室内土工试验,对同一能级强夯前后、不同能级夯后的地基承载力进行对比分析,给出了沿海复杂地质条件下碎石回填地基上不同夯击能的有效加固深度及梅纳深度公式的修正系数,为同类地区高能级强夯工程的设计、监测与检测提供了参考。

     

    Abstract: A series of field tests of high energy dynamic compaction (HEDC) are carried out to investigate the effective depth of improvement (EDI) of foundation backfilled with crushed stone, underlain by thin soft layers and high groundwater level in coastal area. The research work includes the following items: for Test Zone A, single-point dynamic compaction tests under energy levels of 14000, 10000 and 8000 kN·m; comparison tests of single-point dynamic compaction under the same energy level (6000 kN·m) and different bowl pressure (weight) of 34 (180 kN), 50 (250 kN) and 90 kPa (460 kN). For Test Zone B, group-point dynamic compaction tests under energy level of 12000 kN·m. For Test Zone C, group-points dynamic compaction tests under energy level of 15000 kN·m. Cone dynamic penetration tests, standard penetration tests and routine geotechnical experiments are performed, and the monitoring results are analyzed. Through comparative analysis on the bearing capacity of foundation before and after dynamic compaction, the EDI of foundation and the revised coefficient of the Menard formulas are presented under different high energy levels. The results provide the parameters for the design, construction, and detection of high energy dynamic compaction in similar regions.

     

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