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Correlation between Subgrade Reaction Modulus and CBR for Airport Pavement Subgrades

机译:机场路基路基反力模量与CBR的相关性

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摘要

Subgrade characterization plays a key role in the thickness design of airport pavements. From a mechanical point of view, a subgrade soil represents a highly diverse heterogeneous structure. The usual practical way to deal with heterogeneous composites is to average their mechanical properties over the material volume, In the current study, the particular soil parameters under consideration are Young's modulus E, subgrade reaction modulus k (k-value), and California Bearing Ratio (CBR). The Federal Aviation Administration's (FAA) FAARFIELD thickness design program embeds a simple mathematical correlation between lvalue and CBR. This correlation is conservative in the sense of over-estimating the subgrade reaction for a given CBR value, which encourages designers to unnecessarily increase the design thickness of rigid pavements. On the other hand, the commonly used PCA conversion formula overestimates k-value. Both formulas are not reliable for low-strength soils. The objective of this work is to present an updated conversion formula relating the k-values and CBR for lower CBR soils. A new conversion formula is proposed based on the analysis of available plate load and CBR tests for a range of subgrade soils. Results are shown to be consistent with linear regression of experimental data obtained during tests in the FAA's National Airport Pavement Test Facility.
机译:路基表征在机场路面厚度设计中起着关键作用。从机械角度来看,路基土壤代表了高度多样化的异质结构。处理异质复合材料的通常实用方法是在材料体积上平均其机械性能。在当前研究中,考虑的特定土壤参数为杨氏模量E,路基反应模量k(k值)和加利福尼亚轴承比(CBR)。联邦航空管理局(FAA)的FAARFIELD厚度设计程序在lvalue和CBR之间嵌入了简单的数学关系。就给定的CBR值高估路基反应而言,这种相关性是保守的,这鼓励设计人员不必要地增加刚性路面的设计厚度。另一方面,常用的PCA转换公式高估了k值。对于低强度土壤,这两个公式都不可靠。这项工作的目的是提出一个更新的转换公式,该公式将k值和较低CBR土的CBR关联起来。基于对一系列路基土壤的可用板载和CBR试验的分析,提出了一个新的转换公式。结果表明,该结果与在FAA的国家机场路面测试设施中进行的测试期间获得的实验数据的线性回归一致。

著录项

  • 来源
  • 会议地点 Orlando FL(US)
  • 作者

    K. Tuleubekov; D. R. Brill;

  • 作者单位

    SRA International, 1201 New Road, Suite 242, Linwood, NJ 08221;

    Federal Aviation Administration, William J. Hughes Technical Center, ANG-E262, Atlantic City International Airport, NJ 08003;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-26 14:22:09

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