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Study of the field hydraulic conductivity of thin open-graded friction courses

机译:薄开放式摩擦课程的液压导电性研究

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Permeability of asphalt pavements is a property of interest due to its impact on durability and, potentially, safety. In the case of open-graded friction courses (OGFC), the focus with permeability is on the improved drainage capacity that reduces splash and spray, and hydroplaning potential. Multiple research efforts have developed permeameters to evaluate field permeability. However, most of these efforts consider unidirectional linear Darcy flow, which is not sufficient to describe flow through OGFC layers during testing conditions. The objective of this investigation was to examine the use of an approximate analytical solution based on 2D flow proposed by researchers at UT-Austin to study the field permeability of thin OGFC layers. Additional values for a shape factor were proposed to test relatively large areas of thin OGFC layers. Furthermore, it was found that the use of vacuum grease to prevent water flow between the base of the permeameter and the pavement surface clogged the OGFC surface voids, which notably reduced hydraulic conductivity. To overcome this issue, this study evaluated the use of a closed-cell high-density foam pad as a sealant method. Lastly, the study showed the need for a minimum volume of water to provide a smooth drop in water head during testing. This is necessary to allow for accurate measurement of the three time readings required to describe the nonlinear relationship between elevation head and flow rate during a falling-head permeability test. The lessons learned from this study were summarized in a set of guidelines for the successful development of a new permeameter. These guidelines can be used by other highway agencies interested in evaluating the field hydraulic conductivity of thin OGFC layers.
机译:由于其对耐用性的影响,并且可能是安全的影响,沥青路面的渗透性是感兴趣的属性。在开放式摩擦课程(OGFC)的情况下,具有渗透性的重点是改善的排水能力,可降低飞溅和喷雾和喷涂潜力。多项研究努力开发了磁性计可评估现场渗透率。然而,这些努力中的大多数考虑了单向线性达西流程,这不足以在测试条件期间通过OGFC层描述流动。该研究的目的是研究基于UT-AUSTIN的研究人员提出的2D流程的近似分析解决方案,以研究薄OGFC层的现场渗透性。提出了形状因子的附加值来测试相对大的薄OGFC层。此外,发现使用真空润滑脂以防止在磁性计的基部和路面表面之间的水流堵塞了OGFC表面空隙,这显着降低了液压导电性。为了克服这个问题,该研究评估了闭孔高密度泡沫垫作为密封剂方法的用途。最后,该研究表明需要最小量的水,在测试期间在水头中提供平滑的下降。这是必要的,以便准确测量在下降磁头渗透测试期间描述抬高头和流速之间的非线性关系所需的三个时间读数。从本研究中学到的经验教训总结在一系列新髓表的指导方针中。这些准则可以由有兴趣评估薄OGFC层的现场液压导电性的其他高速公路机构使用。

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