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Determination of effective stresses and the compressibility of soil using different codes of practice and soil models in finite element codes

机译:用不同的实践守则和有限元码的不同守则确定有效应力和土壤压缩性

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Creep or secondary compression plays an important role in the deformation behavior of soft soils like peat and organic clay.For the determination of long term settlements several methods have been proposed and implemented in codes for the engineering practice.However,some of the methods used have been developed empirically.In this paper the effective stresses and the compressibility of soils are addressed for some practical cases using the methods mentioned and soil models in finite element codes.the conceptual differencesin methods and calculation results are compared.A stress-strain-creep stain rate model is proposed (Plaxis Soft Soil Creep model) in which strain rates are coupled with stresses and sstrains.The proposed material viscoplastic formulation using a single creep parameter um .The compressibility parameters k, lambda and um usedwithin the model can be determined by standard one-dimensional consolidation tests. Applying the different methods,the calculated settlements show differences in the ratio between the primary and secondary compression as well as the distribution in time of the excess pore pressures.For large settlements the introduction fo the natural strain,defined as the strain related to the actual height instead of the initial height of the soil layer,gives a further improvement of the model proposed (a-b-c model).
机译:蠕变或二次压缩在泥炭和有机粘土等软土的变形行为中起重要作用。对于长期定居点的测定,已经提出了几种方法,以代码为工程实践。但是,使用的一些方法经验伪造。本文使用了有限元代码中提及的方法和土壤模型的一些实际案例来解决土壤的有效应力和压缩性。比较概念差异和计算结果。应力 - 应变 - 蠕变污渍提出了速率模型(Plaxis软土蠕变模型),其中应变率与应力和Sstrains耦合。所提出的材料粘液配方使用单一蠕变参数UM。压缩参数K,Lambda和UM使用该模型可以通过标准确定一维固结测试。应用不同的方法,计算的结算显示了初级和二次压缩之间的比例的差异以及过量孔隙压力的时间分布。对于大型定居,介绍了自然菌株,定义为与实际相关的应变高度而不是土壤层的初始高度,进一步改进了所提出的模型(ABC模型)。

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