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Normalized mechanical properties of resedimented Gulf of Mexico clay from Integrated Ocean Drilling Program Expedition Leg 308

机译:从综合海洋钻探计划探险腿308重新测量墨西哥湾粘土的标准化机械性能

摘要

During Integrated Ocean Drilling Program (IODP) Expedition Leg 308, many Whole Core Samples were recovered from the Ursa Basin in the Gulf of Mexico. Post-cruise geotechnical testing found these samples to be highly disturbed due to the sampling process. This research will determine mechanical properties of laboratory Resedimented samples created using recovered Leg 308 sediment. A seven triaxial compression tests, Ko consolidated, were performed to ascertain these mechanical properties as a function of consolidation stress. Consolidation stress for these specimen ranges from 150 kPa up to 1,200 kPa. Axial strain induced on the soil during laboratory consolidation was approximately 60%. Results show that with an increase in Ko values there is a decrease in undrained shear strength, which is in accord with research completed on resedimented Boston Blue clay (RBBC) at MIT and also intact material that was recovered from this expedition. Undrained shear strength of the material is between 0.24 and 0.27, which is weaker than what is expected, according to SHANSEP. Friction angle of the material ranges from approximately 220 to 260. There is not any apparent relationship between Ko and modulus, friction angle or consolidation stress. Reaching end of primary proved to be a difficult task, concluding that it is reached after approximately five days. CRS data was used to corroborate values such as Cv, (0.0004 cm2/sec) and to more clearly map compression behavior. The results will provide a data base perform analysis and design of offshore structures and calibrate soil models.
机译:在综合海洋钻探计划(IODP)远征腿308期间,从墨西哥湾的Ursa盆地回收了许多完整岩心样品。巡航后的岩土工程测试发现,由于采样过程,这些样本受到严重干扰。这项研究将确定使用回收的Leg 308沉积物创建的实验室再沉淀样品的机械性能。进行了七个Ko固结的三轴压缩试验,以确定这些机械性能与固结应力的关系。这些样品的固结应力范围为150 kPa至1,200 kPa。在实验室加固过程中,土壤上引起的轴向应变约为60%。结果表明,随着Ko值的增加,不排水的剪切强度会降低,这与麻省理工学院对重新沉淀的波士顿蓝粘土(RBBC)以及从该考察中回收的完整材料的研究一致。根据SHANSEP,材料的不排水剪切强度在0.24和0.27之间,比预期的要弱。材料的摩擦角约为220至260。Ko与模量,摩擦角或固结应力之间没有任何明显的关系。达到初等教育的结局被证明是一项艰巨的任务,可以得出结论,要在大约五天后才能达到。 CRS数据用于证实Cv(0.0004 cm2 / sec)之类的值,并更清楚地映射压缩行为。结果将为进行海上结构分析和设计以及校准土壤模型提供数据库。

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