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Micromechanical simulation of porous asphalt mixture compaction using discrete element method (DEM)

机译:采用分立元素法(DEM)多孔沥青混合混合物压实的微机械模拟(DEM)

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摘要

The paper aims to simulate the micromechanical behavior of asphalt mixtures during the compaction process using the Discrete Element Method (DEM). The interactions between the components of a Porous Asphalt (PA) mixture were represented using an Elastic Viscoelastic Contact Model (EVCM), which is a user-defined model implemented in EDEM software, developed based on linear elastic and Burger's viscoelastic constitutive equations. The macroscale parameters of asphalt mortar were characterized using the nonlinear regression analysis of master curves obtained from Dynamic Shear Rheometer (DSR) tests. The verification process of EVCM successfully indicated that the computations trends fall within the range of expected values for the typical asphalt mixture material. Further, a Superpave Gyratory Compaction (SGC) test was carried out and the obtained sample was scanned using X-ray Computed Tomography (X-ray CT) to capture the air void distributions. The DEM was utilized where digital samples were established to simulate the overall process of laboratory and field compaction. The simulation results showed that the model provided a comparable prediction of responses and demonstrated the capability of SGC to fabricate a representative sample. The influence of temperature on the asphalt compaction process was explored and the results implied that temperature decreasing adversely affects the compactability and dramatically increases the demanded compaction efforts which are consistent with the law of viscoelasticity. On the contrary, when the temperature is high, the asphalt binder becomes too fluid and roller loads will simply displace, or "shove" the mat rather than compact it. Tracking the change in the air voids proportion indicates that the motion of aggregates is rather compound. The aggregates flowed vertically downwards in line with the compacting orientation while moved horizontally outwards away from the center. All in all, the findings confirm that the concept is technically practicable, affording the model great potential to help researchers understand the microstructural phases of asphalt mixture during the compaction.
机译:纸张旨在使用离散元素法(DEM)模拟压实过程中沥青混合物的微机械行为。使用弹性粘弹性接触模型(EVCM)表示多孔沥青(PA)混合物的组分之间的相互作用,该模型是在EDEM软件中实现的用户定义的模型,基于线性弹性和汉堡的粘弹性本构剖面方程开发。使用从动态剪切流变仪(DSR)测试获得的主曲线的非线性回归分析来表征沥青砂浆的宏观参数。 EVCM的验证过程成功表明计算趋势落入典型沥青混合材料材料的预期值范围内。此外,进行超级助剂压实(SGC)试验,并使用X射线计算机断层扫描(X射线CT)扫描得到的样品以捕获空隙分布。在建立数字样品以模拟实验室和现场压实的整体过程中,使用该DEM。仿真结果表明,该模型提供了对响应的可比预测,并证明了SGC制造代表性样品的能力。探讨了温度对沥青压实过程的影响,结果暗示温度降低对压缩性产生不利影响,并显着增加了与粘弹性定律一致的所需压实工作。相反,当温度高时,沥青粘合剂变得过于液体,滚轮载荷将简单地取代,或者“推动”垫子而不是紧凑。跟踪空隙比例的变化表明聚集体的运动是相当化合物。聚集体垂直向下流动,与压实的方向一致,同时从中心水平向外移动。总而言之,调查结果证实了该概念在技术上是可行的,这提供了巨大的潜力,帮助研究人员在压实过程中了解沥青混合料的微观结构相。

著录项

  • 来源
    《Construction and Building Materials》 |2021年第27期|124305.1-124305.16|共16页
  • 作者单位

    Norwegian Univ Sci & Technol NTNU Fac Engn Dept Civil & Environm Engn Hogskoleringen 7A N-7034 Trondheim Norway;

    Delft Univ Technol Fac Civil Engn & Geosci Sect Rd Engn Stevinweg 1 NL-2628 CN Delft Netherlands;

    Delft Univ Technol Fac Civil Engn & Geosci Sect Rd Engn Stevinweg 1 NL-2628 CN Delft Netherlands;

    Delft Univ Technol Fac Civil Engn & Geosci Sect Rd Engn Stevinweg 1 NL-2628 CN Delft Netherlands|Khalifa Univ Sci & Technol POB 127788 Abu Dhabi U Arab Emirates;

  • 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

    Compaction; Contact model; Discrete element method (DEM); Micromechanical modeling; Porous asphalt (PA);

    机译:压实;联系方式;离散元素法(DEM);微机械建模;多孔沥青(PA);

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