首页> 外文会议>OCEANS 2009, MTS/IEEE Biloxi - Marine Technology for Our Future: Global and Local Challenges >Numerical investigation of dynamic free-fall penetrometers in soft cohesive marine sediments using a finite difference approach
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Numerical investigation of dynamic free-fall penetrometers in soft cohesive marine sediments using a finite difference approach

机译:有限差分法对软黏性海洋沉积物中动态自由落体渗透仪的数值研究

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Rapid assessments of undrained shear strength of marine sediments are often of great interest in various branches of offshore civil and petroleum engineering, as well as the navy. Dynamic free-fall penetrometers offer a potential for such rapid strength assessment, but have typically been employed in conjunction with mostly empirical relationships to investigate the undrained shear strengths of sediments. In this work, we analyze the behavior of STING (sea terminal impact naval gauge) using the deceleration record of sediment impact. We modify an existing numerical technique for extraction of the undrained shear strength from the deceleration history of the probe. We utilize a finite-difference code for the analysis of continua (FLAC3D) for solution of the penetrometer impact and penetration into the heterogeneous marine sediments. The numerical solutions are described in detail and address many aspects of modeling penetration resistance in cohesive materials. Analysis was performed into a number of numerical aspects of attaining the solution in FLAC3D, including the indeterminate contact geometry after discretization, and incompressibility of the deforming material and the influence of the Poisson's ratio on the solution. Undrained deformation of the water saturated cohesive sediments is characterized by nearly incompressible response, leading to some difficulties in achieving accurate solutions. These effects were investigated and stable solutions were attained. Numerical predictions thus accomplished were compared with the values of the undrained shear strength, as determined in standard laboratory tests on specimens recovered from several locations in the Gulf of Mexico and showed good accuracy and large improvement over the original STING processing algorithm.
机译:快速评估海洋沉积物的不排水剪切强度在海上土木和石油工程的各个分支以及海军中经常引起人们的极大兴趣。动态自由落体渗透仪提供了进行此类快速强度评估的潜力,但通常结合大多数经验关系来研究沉积物的不排水剪切强度。在这项工作中,我们使用沉积物撞击的减速记录来分析STING(海上终端撞击海军规)的行为。我们修改了现有的数值技术,以从探头的减速历史中提取不排水的剪切强度。我们使用有限差分代码进行连续性分析(FLAC3D),以解决针入度计撞击和渗透到非均质海洋沉积物中的问题。详细描述了数值解,并解决了在粘性材料中建模抗穿透性的许多方面。对在FLAC3D中获得溶液的许多数值方面进行了分析,包括离散后的不确定接触几何形状,变形材料的不可压缩性以及泊松比对溶液的影响。含水饱和粘性沉积物的不排水形变的特征是几乎不可压缩的响应,从而导致难以获得精确的解。研究了这些效果并获得了稳定的解决方案。将由此完成的数值预测与不排水强度的值进行了比较,该强度是在标准实验室测试中对从墨西哥湾几个地点回收的样品进行测试后得出的,与原始STING处理算法相比,具有良好的准确性和较大的改进。

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