Sensitivity Analysis of FAARFIELD Rigid Airport Pavement Thickness Determination

G. White, Mitch Sterling, Matt Duggan, J. Sterling
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引用次数: 2

Abstract

FAARFIELD is a common mechanistic-empirical software that uses a combination of layered elastic and finite element methods for the determination of rigid aircraft pavement thickness. The primary input parameters are the aircraft type, mass and departures, concrete flexural strength, sub-base material and thickness, as well as subgrade support characteristic. A parametric sensitivity analysis, including three common commercial aircraft and four subgrade conditions, determined that concrete thickness was most sensitive to concrete strength and aircraft mass. The concrete thickness was least sensitive to the sub-base material and thickness and was moderately sensitive to the subgrade condition and aircraft departures. These relative sensitivities were consistent when the results were analysed based on average percentage change in concrete thickness, the average slope of lines of best fit for normalised parameter values and the coefficients of a numeric linear regression for concrete thickness. It is recommended that designers focus their attention on accurately estimating realistic concrete strength and aircraft mass values, as these parameters had the greatest influence on concrete thickness.
FAARFIELD刚性机场路面厚度确定的敏感性分析
FAARFIELD是一种常用的力学经验软件,它结合了分层弹性和有限元方法来确定刚性飞机路面厚度。主要输入参数为飞机类型、质量和偏差、混凝土抗弯强度、底基材料和厚度、路基支护特性。参数敏感性分析,包括三种常见的商用飞机和四种路基条件,确定混凝土厚度对混凝土强度和飞机质量最敏感。混凝土厚度对底基材料和厚度的敏感性最低,对路基条件和飞机距离的敏感性中等。当根据混凝土厚度的平均百分比变化、最适合归一化参数值的线的平均斜率和混凝土厚度的数值线性回归系数分析结果时,这些相对敏感性是一致的。建议设计师将注意力集中在准确估计实际混凝土强度和飞机质量值上,因为这些参数对混凝土厚度的影响最大。
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