首页> 外文期刊>Applied Sciences >Application of Finite Layer Method in Pavement Structural Analysis
【24h】

Application of Finite Layer Method in Pavement Structural Analysis

机译:有限层法在路面结构分析中的应用

获取原文
           

摘要

The finite element (FE) method has been widely used in predicting the structural responses of asphalt pavements. However, the three-dimensional (3D) modeling in general-purpose FE software systems such as ABAQUS requires extensive computations and is relatively time-consuming. To address this issue, a specific computational code EasyFEM was developed based on the finite layer method (FLM) for analyzing structural responses of asphalt pavements under a static load. Basically, it is a 3D FE code that requires only a one-dimensional (1D) mesh by incorporating analytical methods and using Fourier series in the other two dimensions, which can significantly reduce the computational time and required resources due to the easy implementation of parallel computing technology. Moreover, a newly-developed Element Energy Projection (EEP) method for super-convergent calculations was implemented in EasyFEM to improve the accuracy of solutions for strains and stresses over the whole pavement model. The accuracy of the program is verified by comparing it with results from BISAR and ABAQUS for a typical asphalt pavement structure. The results show that the predicted responses from ABAQUS and EasyFEM are in good agreement with each other. The EasyFEM with the EEP post-processing technique converges faster compared with the results derived from ordinary EasyFEM applications, which proves that the EEP technique can improve the accuracy of strains and stresses from EasyFEM. In summary, the EasyFEM has a potential to provide a flexible and robust platform for the numerical simulation of asphalt pavements and can easily be post-processed with the EEP technique to enhance its advantages.
机译:有限元(FE)方法已广泛用于预测沥青路面的结构响应。但是,通用FE软件系统(例如ABAQUS)中的三维(3D)建模需要大量的计算,并且相对耗时。为了解决这个问题,基于有限层方法(FLM)开发了一种特定的计算代码EasyFEM,用于分析静态荷载下沥青路面的结构响应。基本上,这是一种3D FE代码,通过合并分析方法并在其他两个维中使用傅里叶级数,只需要一个一维(1D)网格,由于易于实现并行,因此可以显着减少计算时间和所需资源计算技术。此外,在EasyFEM中采用了新开发的用于超收敛计算的元素能量投影(EEP)方法,以提高整个路面模型中应变和应力求解的准确性。通过与典型的沥青路面结构的BISAR和ABAQUS结果进行比较,验证了该程序的准确性。结果表明,ABAQUS和EasyFEM的预测响应彼此吻合良好。与普通EasyFEM应用程序得出的结果相比,采用EEP后处理技术的EasyFEM收敛速度更快,这证明EEP技术可以提高EasyFEM应变和应力的准确性。总之,EasyFEM有潜力为沥青路面的数值模拟提供灵活而强大的平台,并且可以通过EEP技术轻松进行后处理以增强其优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号