ISSN 1000-3665 CN 11-2202/P

    考虑时效损伤的砂泥岩填料分数阶蠕变模型

    A fractional order creep model for sandstone and mudstone fillers xonsidering time damage

    • 摘要: 水运工程中填料蠕变特性关系到码头地基的长期稳定性,目前鲜有对砂泥岩填料蠕变模型的研究。为构建能较为准确描述砂泥岩填料蠕变特性的本构模型,开展不同配合比条件下的剪切蠕变试验。基于试验成果,确定基础模型,结合Riemann-Liouville型分数阶微积分算子理论和损伤力学理论,构建一个新的考虑时效损伤的分数阶蠕变模型。模型验证分析发现:随着泥岩颗粒含量的增加,砂泥岩填料的长期强度逐渐递减,促进填料损伤的发展;模型四个主要参数ηα1ηα2α1α2的敏感性从强到弱依次为:ηα2ηα1α2α1;新建模型模拟值与砂泥岩填料试验数据吻合较好,平均R2可达0.99,证明新建模型的可行性和合理性。该成果为砂泥岩填料蠕变特性及码头地基长期稳定性研究提供参考。

       

      Abstract: The creep characteristics of fillers in water transportation engineering are related to the long-term stability of dock foundations. However, limited studies focused on the creep model of sandstone and mudstone fillers. To construct a constitutive model that can accurately describe the creep characteristics of sandstone and mudstone fillers, shear creep tests were conducted under different mix ratio conditions. Based on experimental results, the basic model is determined, and a new fractional order creep model considering time-dependent damage is constructed by combining Riemann-Liouville fractional calculus operator theory and damage mechanics theory. Model validation analysis found that as the content of mudstone particles increases, the long-term strength of sandstone and mudstone fillers gradually decreases, promoting the development of filler damage. Sensitivity analysis reveals that the model parameters ηα1, ηα2, α1, and α2 influence the model response in descending order of sensitivity: ηα2>ηα1>α2,> α1. The simulated values of the new model are consistent with the experimental data of sandstone and mudstone fillers, with an average R2 of 0.99, proving the feasibility and rationality of the new model. This achievement provides the valuable insight for understanding the creep characteristics of sandstone and mudstone fillers and the long-term stability of dock foundations.

       

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