非常规路面结构的机场沥青铺装设计:以印尼机场为例

T. Rahman, B. Suhendro, W. Sartono, Purbolaras Nawangalam, H. Hardiyatmo
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引用次数: 0

摘要

机场路面开始逐渐恶化从几个来源,包括交通负荷和环境条件。为了达到预期的设计寿命,应进行日常维护、修理和修复。针对典型机场路面修复/铺装的设计和实践,有大量的研究和研究。然而,大多数现有的指导方针和研究只适用于具有传统结构的路面。对于非常规路面结构,如鸡爪/卡卡亚姆路面系统和钉板系统,机场沥青加铺层的实践还没有详细的调查。在本文中,基于2015年印度尼西亚一个主要机场的实际跑道修复项目,对非常规路面结构的机场沥青覆盖层设计的挑战和问题进行了研究。讨论了铺层设计程序、现有路面状况评估(包括目测和挠度试验)以及铺层前处理。此外,还对非常规路面结构进行了有限元模拟,以计算所需的加铺厚度。结果表明,在非常规路面结构的加铺设计中,由于路面结构的几何特征不同,不能直接使用降重偏转仪(FWD)的数据来估计反算层模量。此外,有限元模型可以作为一种强大的工具来模拟非常规路面的复杂三维几何特征和重要的荷载条件,如覆盖层的界面剪切粘结,这些通常是FAARFIELD等其他工具无法提供的。最后,本研究表明,增加沥青加铺层可以降低现有板底部的疲劳应力和路基顶部的垂直应力,从而使整体应力水平减小
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Airfield Asphalt Overlay Design for Non-conventional Pavement Structures: A Case Study of Airport in Indonesia
Airfield pavements begin a gradual deterioration from several sources, including traffic load and environmental conditions. To achieve its intended design life, routine maintenance, repair, and rehabilitation should be performed. There are considerable research and studies conducted on the design and practice of pavements rehabilitation/overlay for typical airfield pavements. However, most of the existing guidelines and studies are only suitable for pavements with conventional structures. There has been no detailed investigation into the practice of airfield asphalt overlay for non-conventional pavement structures, such as chicken claw /Cakar Ayam pavement system and nailed-slab system. In the present article, challenges and issues for airfield asphalt overlay design for non-conventional pavement structures were examined based on an actual runway rehabilitation project in one of the major airports in Indonesia in 2015. The overlay design procedure, the evaluation of the existing pavement condition, including visual surveys and deflection tests, and the pre-overlay treatments were also discussed. In addition, a finite element (FE) simulation to model the non-conventional pavement structure was developed to calculate the required overlay thickness. The result showed that, during the overlay design of non-conventional pavement structure, data from falling weight deflectometer (FWD) could not be directly used to estimate the back-calculated layers moduli because of the difference in the geometric features of the pavement structure. Moreover, the FE model can be a robust tool to simulate the complex three-dimensional geometric features of a non-conventional pavement and important loading conditions, such as interface shear bond of overlay, that are usually not available in other tools, such as FAARFIELD. Finally, this study showed that the additional asphalt overlay could reduce the fatigue stress at the bottom of the existing slab and vertical stress at the top of the subgrade, resulting in overall smaller stress levels
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发文量
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审稿时长
15 weeks
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