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Modelling the degradation of penetration resistance during cyclic T-bar tests in a Gulf of Mexico clay

机译:墨西哥湾湾循环T型杆试验期间渗透性抗性的降解

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摘要

Installation and repetitive movement during the operation of a pipeline causes remolding and softening of the surrounding soil. Similar effects can occur around foundations during their operating life. The degradation of the undrained shear strength of soft clays near the seabed is a critical component of the design of subsea facilities, including pipelines and shallow foundations. This paper presents a two-stage strength degradation model based on the framework developed by Hodder et al. (2010) for repeated vertical movement of a cylindrical object (T-bar penetrometer) embedded in a soft Gulf of Mexico (GOM) clay. The model is compared with the behavior observed in four box cores sampled in the Gulf of Mexico, in which 8 cyclic T-bar penetrometer tests were performed. By varying the parameters in the strength degradation model, its applicability for GOM clay is examined, and the effects of the location of cycling within the box core and parameter variability between box cores relative to the average parameters are explored. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:在管道运行期间的安装和重复运动导致周围土壤的复倍和软化。在他们的经营寿命期间,在基础上发生类似的效果。海底靠近海底软粘土的未造成剪切强度的降解是海底设施设计的关键部件,包括管道和浅层基础。本文提出了一种基于HODDER等人开发的框架的两级强度降解模型。 (2010)用于嵌入墨西哥软片(GOM)粘土的圆柱形物体(T杆PENETROMET)的重复垂直运动。该模型与在墨西哥湾中采样的四个盒芯中观察到的行为进行了比较,其中进行了8个循环T杆渗透分析测试测试。通过改变强度劣化模型中的参数,研究了其对GOM粘土的适用性,探索了盒核心内循环内的循环位置和相对于平均参数之间的参数可变性的影响。 (c)2019年Elsevier B.V的生产和托管代表日本岩土工会。

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