Impact of Sea Level Rise-Induced Hazards on Airfield Pavement Performance: A Simulation Study

Xiao Chen, Hao Wang
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Abstract

Sea level rise (SLR) caused by climate change has posed great challenges to coastal infrastructure. It is important for airport agencies to take SLR impact into account for resilient pavement design and maintenance. This study aims to develop a methodological framework to evaluate the impact of SLR on airfield pavement considering three different SLR-induced hazards, namely extreme precipitation, flooding, and groundwater rise. For each hazard, moisture variations in unbound materials of the airfield pavement were first analyzed using hydraulic models. The floodwater can flow to the area beneath the aircraft loading position via both the unpaved zone and surface cracks. Based on the moisture-dependent modulus, critical pavement responses under aircraft loading were then calculated using mechanical models. Finally, cumulative damage factors caused by each hazard were calculated using existing airfield pavement failure models to quantify the damage caused by SLR. The results show that extreme precipitation causes little damage to the structural life of airfield pavement, while groundwater level rise can cause 29% damage to pavement subgrade when the subbase was immersed. The impact of flooding on subgrade is much more remarkable than that on the asphalt layer, with the damage changing from 25% to 50% depending on the recovery process.
海平面上升引发的灾害对机场路面性能的影响:模拟研究
气候变化导致的海平面上升(SLR)给沿海基础设施带来了巨大挑战。对于机场机构来说,考虑 SLR 的影响以进行弹性路面设计和维护非常重要。本研究旨在开发一个方法框架,以评估 SLR 对机场路面的影响,同时考虑 SLR 引起的三种不同危害,即极端降水、洪水和地下水上升。针对每种灾害,首先使用水力模型分析机场路面非结合材料的湿度变化。洪水可通过未铺设区域和表面裂缝流向飞机加载位置下方区域。然后,根据与湿度相关的模量,使用力学模型计算飞机加载时路面的临界响应。最后,利用现有的机场路面破坏模型计算了每种危害造成的累积破坏系数,以量化 SLR 造成的破坏。结果表明,极端降水对机场路面的结构寿命造成的损害很小,而地下水位上升在浸泡路基时会对路面基层造成 29% 的损害。洪水对基层的影响要比对沥青层的影响显著得多,根据恢复过程的不同,破坏程度从 25% 到 50% 不等。
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