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Experimental Investigation on Non-Darcian Flow in Unbound Graded Aggregate Material of Highway Pavement

机译:公路路面无粘结梯度集料中非达尔西流动的试验研究

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摘要

The unbound graded aggregate base (UGAB) has been widely used in drainage layers of highway pavements. This kind of material is of high permeability and can thus drain efficiently the water infiltrated through cracks in the pavement and reduce the associated water damage. The hydraulic conductivity of UGAB is a key factor describing the water flow behavior in UGAB and thus be considered primarily in the design of highway drainage engineering. In this study, the flow behavior of UGAB material was investigated through constant head permeability experiments. Based on the Reynolds number analysis, it was found that the flow in UGAB material was non-Darcian even though under relatively low hydraulic gradient. Therefore, the Darcy law cannot be directly applied to determine the hydraulic conductivity of UGAB. Furthermore, the empirical expression of coefficients in Forchheimer equation, which can be available to evaluate hydraulic conductivity of UGAB material approximately, is presented incorporating the representative particle size and porosity based on the Ergun equation. Then, it was validated against the aid of normalized objective function analysis. Through comparison analysis, the sequencing of hydraulic conductivity of UGAB material was sorted quantitatively in terms of different gradation and representative particle size ( and ). The results also showed that the and the content of fine particles (< 0.075 mm) are appropriate indexes for the gradation design of UGAB material in highway pavement engineering.
机译:无粘结级配骨料基(UGAB)已广泛用于高速公路路面的排水层。这种材料具有很高的渗透性,因此可以有效地排出通过人行道裂缝渗入的水,并减少相关的水损害。 UGAB的导水率是描述UGAB中水流行为的关键因素,因此在公路排水工程的设计中应首先考虑。在这项研究中,通过恒定的水头渗透率实验研究了UGAB材料的流动行为。根据雷诺数分析,发现即使在相对较低的水力梯度下,UGAB材料中的流动也是非达西流体。因此,达西定律不能直接应用于确定UGAB的水力传导率。此外,结合了基于Ergun方程的代表性粒径和孔隙率,提出了可用于近似评估UGAB材料的水力传导率的Forchheimer方程系数的经验表达式。然后,借助归一化目标函数分析对其进行了验证。通过比较分析,UGAB材料的水力传导率顺序根据不同的等级和代表性的颗粒大小(和)进行了定量排序。结果还表明,<0.075 mm的细小颗粒和其含量是UGAB材料在公路路面工程中级配设计的合适指标。

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