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Designing low-volume roads using the dynamic cone penetrometer

机译:使用动态圆锥穿透仪设计小体积道路

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The paper describes an environmentally optimised approach to the design of low-volume roads (LVRs) in which the in situ strengths of the subgrade and pavement layers at the anticipated in-service moisture condition are used for design rather than soaked values. It describes how the assumptions and simplifications inherent in the more traditional California bearing ratio (CBR)-based methods of design tend to produce less-than-optimum solutions compared with the dynamic cone penetrometer (DCP) method. DCP measurements are much more reliable than CBR measurements and are also quick to perform; hence, a relatively large number of measurements of subgrade strengths (for new roads) and pavement layer strengths and thicknesses (for upgrading projects) can be obtained, thereby reducing risks of inadequate data for design purposes. Research has shown how material specifications for LVRs can be relaxed and the paper shows how this aspect is integrated into DCP design methods. The paper reviews the alternative methods of DCP design, summarises the advantages of these methods and recommends some improvements.
机译:本文介绍了一种环境优化的低容量道路(LVR)设计方法,其中路基和路面层在预期的使用湿度条件下的现场强度被用于设计,而不是采用浸泡值。它描述了与动态圆锥穿透计(DCP)方法相比,更传统的基于加利福尼亚轴承比(CBR)的设计方法固有的假设和简化趋向于产生低于最佳解决方案的情况。 DCP测量比CBR测量更可靠,并且执行速度也很快。因此,可以获得相对大量的路基强度(用于新建道路)和路面层强度与厚度(用于升级项目)的测量,从而减少了设计数据不足的风险。研究表明如何可以放宽LVR的材料规格,并且本文说明了如何将此方面集成到DCP设计方法中。本文回顾了DCP设计的替代方法,总结了这些方法的优点,并提出了一些改进建议。

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