基于地理空间信息系统(GIS)的物联网(IoT)和遥感(RS)的沥青路面疲劳防护研究

Shova R Bhattarai, M. Feizbahr
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摘要

本文研究了地理空间信息系统(GIS)作为一种低成本、高精度和快速识别RAP的方法。这项工作还表明,(GIS)可以与包括遥感(RS)和物联网(IoT)在内的新技术联系起来,这些技术可以成为路面工程领域的重要研究课题。本研究结果表明,遥感(RS)减少了疲劳和热裂纹。此外,对改性沥青试样进行了马歇尔稳定性、流动、回弹模量、重复载荷轴向、单轴蠕变和间接拉伸疲劳试验。防止沥青混合料的疲劳。然而,所有样品的疲劳寿命都比基础混合物长。所有样品的疲劳性能改善在5%到38%之间。与其他改性沥青相比,有机油改性沥青具有最好的性能。含有4%鼠李糖脂的生物表面活性剂提高213%。这表明鼠李糖脂生物表面活性剂改性沥青具有优异的抗沥青混合料疲劳性能。将本研究结果与以往的研究结果进行比较,可以得出含有鼠李糖脂生物表面活性剂的样品比用其他油改性的沥青样品具有更好的抗疲劳性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Internet of Things (IoT) and Remote Sensing (RS) Based on Geospatial Information System (GIS) Against Fatigue of Asphalt Bitumen
This work investigated the Geospatial Information System (GIS) as a low-cost, high-precision, and rapid method for identifying the (RAP). This work also showed that (GIS) can be linked to new techniques including Remote Sensing (RS) and the Internet of Things (IoT) which can be serious subjects for research in the field of pavement engineering. The results of the present work showed that Remote Sensing (RS) has reduced fatigue and thermal cracks. Moreover, for modified asphalt samples, tests of Marshall stability, flow, resilience modulus, repeated load axial, uniaxial creep and indirect tensile fatigue were carried out. against fatigue of asphalt mixtures. However, all samples showed longer fatigue life than the base mixture. Fatigue performance improvement for all samples was between 5 and 38%. Organic oil-modified bitumens have the best performance compared to other modified bitumens. Containing 4% rhamnolipid biosurfactant increased by 213%. This indicates the excellent performance of bitumen modified with rhamnolipid biosurfactant against fatigue of asphalt mixtures. Comparing the results of this study with the results of previous studies, it can be concluded that samples containing rhamnolipid biosurfactant had a better behavior against fatigue compared to samples made with bitumen modified with other oils.
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