Wang Jianxiu, Cao Ansheng, Song Dongsheng, Feng Bo, Li Huboqiang, Long Yanxia, Ye Zhenhua
College of Civil Engineering, Tongji University, Shanghai 200092, China.
Key Laboratory of Geotechnical and Underground Engineering of Ministry of Education, Tongji University, Shanghai 200092, China.
Materials (Basel). 2023 Apr 29;16(9):3465. doi: 10.3390/ma16093465.
The construction of island airports on coral reefs inevitably encounters the impact load of aircraft takeoff and landing. However, previous studies have not presented a detailed description of the dynamic response of the coral sand beneath the runways of island reclamation airports under aircraft load. In the current study, the coral sand of Mischief Reef Airport in the Nansha Islands, China, was selected as the background. The pore water pressure and strain characteristics of reshaped coral sand under aircraft loads with different dynamic stress amplitudes and vibration frequencies were studied using dynamic triaxial tests. Particle discrete element software was employed to study the deformation characteristics of coral sand with different particle sizes and porosities under aircraft loads. Results show that when the dynamic stress amplitude and vibration frequency were small, the pore water pressure and strain of the coral sand samples gradually increased with the number of load cycles, and the growth rate became increasingly small. When the dynamic stress amplitude and vibration frequency were large, the axial strain of the coral sand samples increased with the vibration frequency, and the growth rate exhibited an increasing trend. The deformation of the coral sand samples increased with porosity under aircraft loading. The larger the variation range of the coral sand particle size was, the larger the coral sand deformation caused by aircraft takeoff and landing load was. These results can provide a reference for the treatment and repair of the airstrip foundation of island airports.
在珊瑚礁上建设海岛机场不可避免地会遇到飞机起降的冲击荷载。然而,以往的研究尚未对填海造陆机场跑道下方珊瑚砂在飞机荷载作用下的动力响应进行详细描述。在本研究中,选取中国南沙群岛美济礁机场的珊瑚砂作为研究对象。采用动三轴试验研究了不同动应力幅值和振动频率的飞机荷载作用下重塑珊瑚砂的孔隙水压力和应变特性。利用颗粒离散元软件研究了不同粒径和孔隙率的珊瑚砂在飞机荷载作用下的变形特性。结果表明,当动应力幅值和振动频率较小时,珊瑚砂试样的孔隙水压力和应变随荷载循环次数逐渐增大,且增长率越来越小。当动应力幅值和振动频率较大时,珊瑚砂试样的轴向应变随振动频率增大,且增长率呈增大趋势。飞机荷载作用下,珊瑚砂试样的变形随孔隙率增大而增大。珊瑚砂粒径变化范围越大,飞机起降荷载引起的珊瑚砂变形越大。这些结果可为海岛机场跑道地基的处理与修复提供参考。