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Induction Heating-Assisted Compaction in Porous Asphalt Pavements: A Computational Study

机译:多孔沥青路面中感应加热辅助压实的计算研究

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Low temperature asphalt (LTA) technologies, such as warm-mixed asphalt mixes, are utilized in the paving industry to lower energy demands and greenhouse gas emissions during asphalt mixing and pavement construction. However, the asphalt mixes developed that incorporate LTA additives are more sensitive than hot-mixed asphalts to temperature reduction during compaction, which leads to inadequate compaction and subsequent poor pavement performance. The induction heating-assisted compaction of pavement structures appears to be an effective way to ameliorate such issues and to improve mix compactability at lower temperatures. Considering that induction-assisted compaction is a complex process, a computational methodology is proposed in this paper. A porous asphalt concrete mix was considered as case material. For the pavement compaction analyses after induction, the temperature field generated by electromagnetic induction was predicted and the material parameters of asphalt mortar were adjusted. The effect of induction heating on asphalt compaction effectiveness, the tendency of mix density changing, the increase in compactor passes, and the influence of temperature on compaction at different locations in the pavement were studied as well.
机译:低温沥青(LTA)技术(例如温拌沥青混合料)在铺路行业中用于降低沥青混合和铺路过程中的能源需求和温室气体排放。但是,开发的掺有LTA添加剂的沥青混合料比热混沥青对压实过程中的温度降低更为敏感,这导致压实不足和随后的路面性能差。感应加热辅助的路面结构压实似乎是缓解此类问题并提高低温下混合料可压实性的有效方法。考虑到感应辅助压实是一个复杂的过程,本文提出了一种计算方法。多孔沥青混凝土混合物被视为外壳材料。对于感应后的路面压实分析,预测了电磁感应产生的温度场并调整了沥青砂浆的材料参数。研究了感应加热对沥青压实效果的影响,混合料密度变化趋势,压实机通过量的增加以及温度对路面不同位置压实的影响。

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