Effects of Relative Humidity and Temperature on the Drying Shrinkage of Roller-Compacted Concrete Pavements

Julián Pulecio-Díaz, M. Sol-Sánchez, F. Moreno-Navarro
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Abstract

Roller-compacted concrete (RCC) pavements have been the subject of studies focused on their increasing deterioration over time due to the influence of vehicular loading and ambient factors in humidity and temperature conditions ranging from medium to low (40% relative humidity and 25 °C temperature). Therefore, it is necessary to understand how they behave under various relative humidity and temperature conditions since these parameters vary in each geographic region. In this context, this research focused on analyzing the effect of drying shrinkage on RCC pavements under the influence of vehicular loading using a computational model calibrated with data obtained under typical ambient conditions. For this purpose, laboratory experiments were performed, numerical modeling was used, and the results for RCC pavements were validated using statistical analysis. The results revealed validated models providing moisture content and drying shrinkage curves. These results also underline the importance of considering ambient effects when calculating pavement stresses as a response variable in structural designs. In particular, these effects are highlighted as they can generate changes in pavement stresses of up to 10%, emphasizing the relevance of the models proposed in this study as they consider this phenomenon when predicting the performance and durability of RCC pavements.
相对湿度和温度对碾压混凝土路面干燥收缩的影响
碾压混凝土(RCC)路面一直是研究的主题,重点是在中低湿度和温度(相对湿度为 40%,温度为 25°C)条件下,由于车辆荷载和环境因素的影响,路面会随着时间的推移而日益老化。因此,有必要了解它们在各种相对湿度和温度条件下的表现,因为这些参数在每个地理区域都有所不同。在这种情况下,本研究重点分析了在车辆荷载影响下,干燥收缩对 RCC 路面的影响,使用的计算模型校准了在典型环境条件下获得的数据。为此,进行了实验室实验,使用了数值模型,并通过统计分析验证了 RCC 路面的结果。结果显示,验证模型提供了含水量和干燥收缩曲线。这些结果还强调了在结构设计中将路面应力作为响应变量进行计算时考虑环境影响的重要性。特别强调的是,这些影响可导致路面应力发生高达 10% 的变化,从而强调了本研究中提出的模型的相关性,因为这些模型在预测 RCC 路面的性能和耐久性时考虑了这一现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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