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An Airfield Soil Pavement Design Method Based on Rut Depth and Cumulative Fatigue

机译:基于车辙深度和累积疲劳的机场土壤路面设计方法

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摘要

The structure and damage modes of soil pavement, as well as existing problems in current design methods, were comprehensively analyzed, and a new design method for airfield soil pavement was proposed. The proposed method avoids the use of the “designed aircraft” concept and instead adopts the cumulative fatigue theory widely used in permanent airfield design at present. Moreover, in view of the lack of aircraft wheel trajectory distribution data, an approximate method for calculating the wheel trajectory distribution considering the side slip distance of the aircraft was proposed and the equivalent width of the wheel tread was calculated by introducing the modulus ratio. Finally, the pass-to-coverage ratio was obtained. According to the characteristics and damage modes of airfield soil pavement, rut depth was determined to be the unique factor affecting soil pavement damage, and resilient modulus was used as the control variable to improve the adverse impact of the empirical method. Furthermore, according to the rut prediction formula for airfield soil pavement put forward by the US Army Engineer Research and Development Center, a fatigue equation based on the resilient modulus was proposed to calculate the allowable number of repetitions. To verify the reliability of the design method, a test section was constructed at a test center in Jining, China, and the theoretical maximum allowable repetitions on the soil runway were calculated by the currently used California bearing ratio test, the β-fatigue equation, and the proposed method. Aircraft traffic tests were carried out on the test section. Finally, the theoretical and test results were compared and the values calculated via the proposed method were found to be consistent with experimental values, thereby validating the reliability of the method.
机译:综合分析了土壤路面结构和损伤模式,以及当前设计方法的存在问题,提出了一种新的机场土路面设计方法。该方法避免了使用“设计的飞机”概念,而是采用目前永久机场设计广泛使用的累积疲劳理论。此外,考虑到飞机轮轨迹分布数据缺乏,提出了考虑飞机侧滑移距离的轮轨分布的近似方法,并通过引入模量比计算车轮胎面的等效宽度。最后,获得了进纸率。根据机场土壤路面的特点和损坏模式,确定戒控深度是影响土壤路面损伤的独特因素,弹性模量用作控制变量,以提高经验方法的不利影响。此外,根据美国陆军工程师研发中心提出的机场土壤路面的车辙预测公式,提出了一种基于弹性模量的疲劳方程来计算允许的重复数量。为了验证设计方法的可靠性,测试中心在济宁,中国的测试中心构建,并通过目前使用的加州轴承比测试,β-疲劳方程计算了土壤跑道上的理论最大允许重复。和提出的方法。在测试部分进行了飞机交通测试。最后,比较了理论和测试结果,发现通过所提出的方法计算的值与实验值一致,从而验证该方法的可靠性。

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