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Using Genetic Programming to Predict Plastic Strain in Subgrade Soils Under Repeated Loading

机译:利用遗传程序预测反复荷载作用下路基土壤的塑性应变

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摘要

Accumulated plastic strain in subgrade soils under repeated loading is an important factor for the design and analysis of flexible pavement. Accurate prediction of the plastic strain is dependent on the constitution of a predictive model. This study discusses the plastic strain properties in subgrade soil under repeated loading and develops a predictive model using a genetic programming (GP) method. Repeated load triaxial tests were conducted under various confining pressures, stress levels, and moisture contents. To develop the predictive model, a total of 475 records were randomly divided into three datasets (159,158, and 158 records) for training, validation, and application purposes. The results showed that the GP method was applied successfully to develop a predictive model that uses stress level, load repetition, dry unit weight, liquid limit, plastic index, and clay content as inputs and has plastic strain as the output. The R~2 values for the training, validation, and applied datasets were 0.9551,0.9494, and 0.9489, respectively. This study demonstrates and confirms the superior performance of GP over traditional prediction methods when applied to predict plastic strain in subgrade soils. The model and algorithms proposed in this study provide a good foundation for further development when more robust datasets of other types of soils are available.
机译:反复荷载作用下路基土壤中累积的塑性应变是柔性路面设计和分析的重要因素。塑性应变的准确预测取决于预测模型的构成。这项研究讨论了在反复荷载下路基土壤中的塑性应变特性,并使用遗传规划(GP)方法开发了预测模型。在各种围压,应力水平和水分含量下进行了重复的三轴载荷试验。为了建立预测模型,将总共475条记录随机分为三个数据集(159,158和158条记录)以进行培训,验证和应用。结果表明,GP方法已成功应用于以应力水平,载荷重复,干重,液体极限,塑性指数和黏土含量为输入并以塑性应变为输出的预测模型。训练,验证和应用数据集的R〜2值分别为0.9551、0.9494和0.9489。这项研究证明并证实了GP在用于预测路基土壤中的塑性应变时优于传统预测方法的性能。当可获得其他类型土壤的更强大的数据集时,本研究中提出的模型和算法为进一步开发提供了良好的基础。

著录项

  • 来源
    《Journal of testing and evaluation》 |2017年第1期|85-93|共9页
  • 作者

    S.-R. Yang; J.-R. Chang;

  • 作者单位

    Dept. of Civil Engineering, National Pingtung Univ. of Science and Technology, No. 1, Shuefu Rd., Neipu, Pingtung 91201, Taiwan;

    Graduate Institute of Architecture and Sustainable Planning, National Man University, No. 1, Sec. 1, Shennong Road, Yilan City, Yilan County 26047, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    genetic programming; plastic strain; subgrade soil; repeated loading; flexible pavement;

    机译:基因编程;塑性应变路基土重复加载;柔性路面;
  • 入库时间 2022-08-17 13:30:58

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