透水混凝土路面水文性能的有限元分析研究

Hung T. Nguyen, Truong Phu Nguyen, Tan Nhat Phan, P. T. Tran, Phu Ba Nguyen
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引用次数: 1

摘要

透水混凝土路面作为低影响开发技术中水管理的有效实践已被广泛使用。透水混凝土路面的水文性能主要受降雨强度和设计坡度的影响。本研究通过有限元分析对透水混凝土路面的地表积水时间进行了评价,从而评价了透水混凝土路面的水文性能。利用Hydrus 2D程序对透水混凝土路面的水文性能与路面之间的关系进行了一系列的模拟。研究结果表明,随着坡度的增大,地表积水时间也随之增加。结果表明,在一定降雨强度下,坡度变量对透水混凝土路面水位的影响较小。对降雨强度影响的观察表明,当降雨强度增加2倍时,地表积水时间减少约2倍。当地表积水出现时,高降雨强度透水混凝土路面含水率较低。降雨强度对透水混凝土路面的水文性能也有显著影响。本研究仅通过有限元分析,利用地表积水时间来评估水文性能。其他因素对透水混凝土路面水文性能的影响还有待进一步的试验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGATION ON HYDROLOGIC PERFORMANCE OF PERVIOUS CONCRETE PAVEMENT BY FINITE ELEMENT ANALYSIS
Pervious concrete pavement has been used widely as an effective practice for water management in low-impact development techniques. The hydrologic performance of pervious concrete pavement depends significantlyon the rainfall intensity and the designed slope. This study assessed the hydrologic performance of pervious concrete pavement by evaluating the time for surface ponding via finite element analysis. A series of simulations were carried out to explore the relationship between hydrologic performance and pervious concrete pavement by the Hydrus 2D program. The research’s results showed that as the slope increased, the time of surface ponding also increased. The data indicated that the slope variable had a low impact on the water level in pervious concrete pavement under a constant rainfall intensity. Observation of the effect of rainfall intensity showed that when the rainfall intensity increased twofold, the time for surface ponding dropped about two times. Furthermore, when surface ponding appeared, pervious concrete pavement at higher rainfall intensity had lower water content. The rainfall intensity also significantly affects the hydrologicperformance of the pervious concrete pavement. This study only assessed the hydrologic performance by using the time for surface ponding via finite element analysis. Further experimental studies should be conducted to examine the relationship of other factors to the hydrologic performance of pervious concrete pavement.
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