在柔性路面设计中实现非饱和底板土ramcodes设计曲线谱

Tecnia Pub Date : 2022-08-08 DOI:10.21754/tecnia.v32i2.1388
Hainer Josué Inga López, José Wilfredo Gutiérrez Lazares
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引用次数: 0

摘要

路面结构的设计过程假设路基在使用寿命期间的某一时刻会饱和,然而,路基的饱和取决于其所处区域的条件。因此,有必要对部分饱和路基的设计条件进行研究。本研究旨在实现非饱和路基土的RAMCODES设计曲线谱,并将其应用于与Oyon-Ambo高速公路相关的环境和交通条件下的柔性路面设计。为了构建RAMCODES设计曲线,进行了不同压实能和含水率的CBR试验。同样,使用OriginPro 2019程序获得曲线,并使用数学模型预测路基饱和度随时间的变化。随后,获得季节性CBR并进行相关,得到弹性模量。最后进行了两种柔性路面结构设计,一种采用传统的路基表征方法,另一种采用本文提出的方法。结果表明,考虑路基非饱和特性对路面设计进行了优化,路基承载力提高了28.8%,即下层基层厚度减少了25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementación del espectro de curvas de diseño ramcodes de suelos no saturados de subrasantes en el diseño de pavimentos flexibles
The design process for a pavement structure assumes that the subgrade will saturate at some point during the service life, however, the saturation of the subgrade depends on the conditions depending on the region in which it is located. Therefore, it is necessary to study design conditions for partially saturated subgrade. The present research aims to implement the spectrum of RAMCODES design curves for unsaturated subgrade soils, applied to the design of flexible pavements under environmental and traffic conditions associated with the Oyon-Ambo highway. To construct the RAMCODES design curves, CBR tests were performed by varying compaction energies and moisture contents.  Likewise, using the OriginPro 2019 program, the curves were obtained and a mathematical model was used to predict the variation of the degree of saturation in the subgrade over time. Subsequently, the seasonal CBR were obtained and correlated to obtain the resilient moduli. Finally, two flexible pavement structure designs were carried out, one using the traditional subgrade characterization methodology and the other according to the proposed methodology. From the results obtained, it is interpreted that the consideration of the unsaturated behavior of the subgrade optimizes the pavement design since the bearing capacity of the subgrade is increased by 28.8%, which means that the thickness of the subbase layer is reduced by 25%.
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