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Structural Response of Pervious Concrete Pavement Systems Using Falling Weight Deflectometer Testing and Analysis

机译:跌落挠度计测试与分析透水混凝土路面系统的结构响应。

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摘要

Although pervious concrete material properties, mix design, and storm water applications are well documented in the literature, the structural behavior of pervious concrete pavement systems has not been investigated. A parking lot was constructed in which traditional impervious concrete was used on half of the parking lot and pervious concrete was used on the other half. The traditional concrete layer was placed on natural subgrade. The pervious concrete portion was divided into two sections with two pervious concrete mixtures and aggregate base thicknesses of 300 and 450 mm. To better understand the behavior of traditional and pervious concrete pavement systems of the parking lot, the subgrade soil properties were characterized by using plate load testing and nuclear density gauge. Furthermore, the aggregate base layers used in the pervious concrete systems were characterized by using plate load testing. After constructing the parking lot, falling weight deflectometer (FWD) testing was performed on the traditional concrete and the two pervious concrete pavement systems. In addition to summarizing the subgrade and base material properties, this paper compares the response of the three pavement systems during FWD tests. Furthermore, artificial neural network-based backcalculation models were used to better understand the response of the three pavement systems. FWD results show that a pervious concrete pavement system with 450-mm aggregate base experiences smaller measured deflections and better uniform support than the traditional concrete pavement system.
机译:尽管透水混凝土的材料性能,混合料设计和雨水应用在文献中有充分的文献记载,但透水混凝土路面系统的结构性能尚未得到研究。建造了一个停车场,其中一半的停车场使用传统的不透水混凝土,而另一半则使用了透水混凝土。传统的混凝土层放置在天然路基上。将可渗透混凝土部分分为两部分,并掺入两种可渗透混凝土混合物,总基础厚度分别为300和450 mm。为了更好地了解停车场的传统和透水混凝土路面系统的性能,使用板式载荷测试和核密度仪对路基的土壤特性进行了表征。此外,透水混凝土系统中使用的骨料基础层通过板荷载试验进行了表征。建造停车场后,对传统混凝土和两个透水混凝土路面系统进行了落锤挠度计(FWD)测试。除了总结路基和基础材料的性能外,本文还比较了FWD测试期间三种路面系统的响应。此外,基于人工神经网络的反算模型用于更好地了解这三种路面系统的响应。 FWD结果表明,与传统的混凝土路面系统相比,具有450mm骨料基数的透水混凝土路面系统具有较小的实测挠度和更好的均匀支撑。

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