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An alternative method for computing thermal stress in asphalt mixture: the Laplace transformation

机译:计算沥青混合料中热应力的另一种方法:拉普拉斯变换

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Low-temperature cracking is one of the most severe distresses for asphalt pavement experiencing severely cold weather conditions. Many road authorities recognise thermal stress as a crucial parameter for evaluating the low-temperature performance of asphalt pavement. Thermal stress is conventionally computed with a two-step approach where the relaxation modulus is derived from the experimental creep compliance after which the convolution integral is numerically solved. In this paper, a one-step computation solution based on Laplace transformation is proposed. Thermal stress and corresponding critical cracking temperature of a set of six mixtures are easily computed and graphically and statistically compared to the values obtained with the traditional approach. It is observed that the use of the Laplace-based method provides reliable and reasonably close results to those obtained with the conventional solution.
机译:低温开裂是遇到严重寒冷天气的沥青路面最严重的困扰之一。许多道路管理部门认识到热应力是评估沥青路面低温性能的关键参数。传统上,热应力是通过两步法计算的,其中松弛模量是从实验蠕变柔量得出的,然后对卷积积分进行数值求解。提出了一种基于拉普拉斯变换的单步计算解决方案。可以轻松计算一组六种混合物的热应力和相应的临界开裂温度,并将其与传统方法获得的值进行图形和统计比较。可以看出,基于拉普拉斯的方法的使用提供了与常规解决方案相比可靠且合理接近的结果。

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