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Comparison of Pavement Design Using AASHTO 1993 and NCHRP Mechanistic- Empirical Pavement Design Guides

机译:使用AASHTO 1993和NCHRP力学-经验路面设计指南比较路面设计

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The new Mechanistic-Empirical Pavement Design Guide (MEPDG) provides methodologies for mechanistic-empirical pavement design as opposed to the empirical methodology used in the 1993 American Association of State Highway and Transportation Officials (AASHTO) pavement design guide. The objective of this study was to compare the pavement designs obtained using the 1993 AASHTO and the new MEPDG methods for typical Portland Cement Concrete (PCC) and Asphalt Concrete (AC) pavements in Kansas. Five in service Jointed Plain Concrete Pavement (JPCP) projects were reanalyzed as equivalent JPCP and AC projects using both approaches at the same reliability level. The results show that the new MEPDG analysis yielded thinner AC sections for all projects than those obtained from the 1993 AASHTO design guide analysis. Four of the PCC sections, designed using the 1993 AASHTO design guide, were thicker than the sections obtained with MEPDG. The MEPDG analysis resulted in thicker PCC slab for the fifth project. Effect of change in performance criteria on the thickness of AC and PCC sections has also been investigated. It has been found that AC sections are more sensitive to change in performance criteria as compared to PCC sections using MEPDG versions 1.0 and 1.1. In general, difference in thickness using both versions is not significant for all practical purposes.
机译:新的《机械-经验路面设计指南》(MEPDG)提供了机械-经验路面设计的方法论,与1993年美国国家公路和运输官员协会(AASHTO)路面设计指南中使用的经验方法相反。这项研究的目的是比较使用1993 AASHTO和新的MEPDG方法获得的堪萨斯州典型波特兰水泥混凝土(PCC)和沥青混凝土(AC)路面设计。使用这两种方法,在相同的可靠性水平下,重新分析了五个在役的节理平整混凝土路面(JPCP)项目,作为等效的JPCP和AC项目。结果表明,与从1993 AASHTO设计指南分析获得的结果相比,新的MEPDG分析在所有项目中产生的AC截面都更薄。使用1993 AASHTO设计指南设计的PCC截面中有四个比用MEPDG获得的截面厚。 MEPDG分析得出第五个项目的PCC平板较厚。还研究了性能标准变化对AC和PCC截面厚度的影响。已经发现,与使用MEPDG版本1.0和1.1的PCC部分相比,AC部分对性能标准的变化更敏感。通常,对于所有实际目的,使用这两种版本的厚度差异并不明显。

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  • 会议地点 Chicago IL(US);Chicago IL(US)
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    University of Connecticut Department of Civil Environmental Engineering 261 Glenbrook Rd Unit 2037 Storrs CT 06269;

    H.W. Lochner Inc. 1245 East Brickyard Road Suite 400 Salt Lake City UT 84106;

    Department of Civil Engineering 2118 Fiedler Hall Kansas State University Manhattan KS 66506;

    Bureau of Materials Research Kansas Department of Transportation 2300 Van Buren Topeka KS 66611;

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