首页> 外文会议>Geo-Congress >Laboratory Investigation of the Pre-and Post-Cyclic Volume Change Properties of Sherman Island Peat
【24h】

Laboratory Investigation of the Pre-and Post-Cyclic Volume Change Properties of Sherman Island Peat

机译:谢尔曼岛泥炭前后循环体积变化性能的实验室调查

获取原文

摘要

We investigate through laboratory testing the volume change characteristics of peaty organic soil from Sherman Island, California under static conditions (consolidation, secondary compression) and post-cyclic conditions. Incremental consolidation tests indicate the material to be highly compressible (C_c = 3.9, C_r = 0.4) and prone to substantial ageing from secondary compression (C_α/C_c = 0.05 following virgin compression). Strain-controlled cyclic triaxial testing of the peat finds the generation of cyclic pore pressures for cyclic shear strain levels beyond approximately 0.5-1.0%, with the largest residual pore pressure ratios r_(ur) (cyclic residual pore pressure normalized by pre-cyclic consolidation stress) being approximately 0.2-0.4. Post cyclic volume change occurs from pore pressure dissipation and secondary compression. The level of post-cyclic secondary compression increases with r_(ur). Many of these phenomena have not been documented previously and suggest the potential for seismic freeboard loss in levees due to mechanisms other than shear failure.
机译:我们通过实验室测试静态条件(固结,二次压缩)和后循环条件下加利福尼亚州谢尔曼岛泥炭有机土壤体积变化特征的调查。增量合并测试表明材料是高度可压缩的(C_C = 3.9,C_R = 0.4),并且容易从二次压缩(C_α/ C_C = 0.05之后)的显着老化。泥炭的应变控制的循环三轴试验发现循环剪切应变水平的循环孔隙压力超过约0.5-1.0%,具有最大的残余孔隙压力比R_(UR)(通过预循环固结标准化循环残余孔隙压力压力)约为0.2-0.4。循环体积变化发生后孔隙压力耗散和二次压缩发生。循环后次级压缩水平随r_(ur)增加。由于除剪切失效之外的机制,尚未记录这些现象中的许多现象,并提出了由于剪切失效以外的机制而对靴子的地震损失的可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号