Experimental evaluation of performance of geo-mat system on weak to intermediate subgrade

IF 2.2 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Frontiers in Built Environment Pub Date : 2024-05-21 DOI:10.3389/fbuil.2024.1365890
Saif Jawad, Jie Han, Hao Liu
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Abstract

Geo-mat system is considered as an alternative to a flexible or rigid pavement that can be used for fire lanes, parking areas, or roadway shoulders for cars, pickup trucks, utility/delivery trucks, and fire trucks. Also, it can be used to reduce the thickness of the base course in unpaved roads. In this investigation, six cyclic loading tests were conducted to assess the efficacy of the geo-mat system on weak to intermediate subgrade layers, characterized by California Bearing Ratios (CBR) of 2%, 3%, and 4%. Control sections, consisting of a 300-mm thick base course over subgrade layers with CBR values of 2% or 4%, were compared against the test sections comprising a geo-mat system placed atop aggregates of varied thickness (150 or 50 mm) on a geotextile layer over the same subgrade layers. Each test section underwent cyclic loading, progressively increasing from 17.8 to 71.2 kN using a 300-mm diameter steel plate. The results demonstrate that the geo-mat system, particularly when placed over a 150 mm-thick aggregate base, exhibited comparable or superior performance to the control sections with a 300 mm thickness, especially under substantial cyclic loading. This was evidenced by the reduced permanent deformations beneath the loading plate and a wider load distribution. The increase of the subgrade CBR value reduced the permanent deformation significantly. When the intermediate subgrade with a 4% CBR was used, the geo-mat system played a more important role than the aggregate base and the base thickness had a minor effect on the performance.
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土工垫系统在中弱基层上的性能实验评估
土工垫系统被认为是柔性或刚性路面的替代品,可用于消防车道、停车区或路肩,供汽车、小卡车、公用事业/送货卡车和消防车使用。此外,它还可用于减少未铺设路面的基层厚度。在这项调查中,我们进行了六次循环加载试验,以评估土工垫系统在软弱至中等基层上的功效,这些基层的加州承载比(CBR)分别为 2%、3% 和 4%。对照区段包括 CBR 值为 2% 或 4% 的基层上的 300 毫米厚的基层,与试验区段进行了比较,试验区段包括在相同基层上的土工织物层上不同厚度(150 毫米或 50 毫米)的集料上铺设的土工垫系统。每个试验段都使用直径为 300 毫米的钢板承受从 17.8 千牛逐渐增加到 71.2 千牛的循环荷载。结果表明,土工垫系统,尤其是铺设在 150 毫米厚的集料基层上的土工垫系统,表现出与厚度为 300 毫米的对照路段相当甚至更优越的性能,特别是在承受较大的循环荷载时。这表现在加载板下的永久变形减少,荷载分布更广。基层 CBR 值的增加大大减少了永久变形。当使用 CBR 值为 4% 的中间基层时,土工垫系统比集料基层发挥了更重要的作用,而基层厚度对性能的影响较小。
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来源期刊
Frontiers in Built Environment
Frontiers in Built Environment Social Sciences-Urban Studies
CiteScore
4.80
自引率
6.70%
发文量
266
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