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PERFORMANCE OF PIPE-SOIL INTERACTION MODELS IN A QUASI-DYNAMIC APPROACH TO PIPELINE STABILITY ANALYSIS

机译:管道稳定性分析的拟动力方法中土-土相互作用模型的性能

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This paper presents performance of pipe-soil interaction models in a quasi-dynamic approach to submarine pipeline stability analysis. The quasi-dynamic method, as implemented in the PRCI-OBS software (Level 2), applies a series of most probable maximum waves to the pipe that are derived from extreme value analysis of the given sea state. The theoretical formulation for selecting the most probable maximum waves are derived for further clarity. The PRCI-OBS software (Level 2) was upgraded to allow for this study. The upgrade included addition of the well known Verley and Sotberg model for sand and Verley and Lund model for clay soils to the existing soil models known as PRCI soil models. The upgrade also included fixing previously reported bugs such as over-prediction of embedment in current-dominated cases. The matrix of performance simulations was sufficiently large to allow for making general conclusions. The results confirmed that the discrepancy between old and new soil models increased as the parameters approached extremities of the input matrix. The newly implemented models are based on larger model test data sets and could produce consistent results across the range of input data and thus are recommended.
机译:本文以准动力学方法对海底管道稳定性进行分析,介绍了管土相互作用模型的性能。在PRCI-OBS软件(第2级)中实施的准动态方法将一系列最可能的最大波应用到管道上,这些最大波是从给定海态的极值分析得出的。为了进一步清楚,推导了用于选择最可能的最大波的理论公式。 PRCI-OBS软件(第2级)已升级,可以进行此研究。升级包括将众所周知的用于沙子的Verley和Sotberg模型以及用于粘土的Verley和Lund模型添加到现有的称为PRCI土壤模型的土壤模型中。升级还包括修复以前报告的错误,例如在当前占主导地位的情况下对嵌入的过度预测。性能模拟的矩阵足够大,可以得出一般性结论。结果证实,新旧土壤模型之间的差异随着参数逼近输入矩阵的极端而增加。新实施的模型基于较大的模型测试数据集,并且可以在输入数据范围内产生一致的结果,因此建议使用。

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