双车道道路下坡路段的客车当量

IF 0.6 4区 工程技术 Q4 ENGINEERING, CIVIL Baltic Journal of Road and Bridge Engineering Pub Date : 2020-09-28 DOI:10.7250/BJRBE.2020-15.499
Marko Subotić, Željko Stević, Edis Softic, Veljko Radicevic
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引用次数: 2

摘要

为了确定自由交通流条件下车辆结构对波斯尼亚和黑塞哥维那两车道道路纵向降级的影响,本文对乘用车当量(PCEs)进行了实证研究。该研究是在考虑双车道道路降级的横截面车辆类别的情况下进行的。利用乘用车当量(pce)确定了自由交通流条件下车辆结构的负面影响。结果表明:在双车道道路降级时,乘用车等效值从平坦地形下降到确定降级g = - 3.00%的边界最小值,之后开始略有上升;在此基础上,建立了用二阶多项式标定的模型,以确定乘用车等效的平均值作为其边界值的函数。在自由交通流条件下,将所建立的模型与《公路通行能力手册》中的模型进行了比较。此外,还建立了PCE15%、PCE50%和PCE85%的百分比值模型。
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Passenger Car Equivalents on Downgrades of Two-Lane Roads
In this paper, empirical research about Passenger Car Equivalents (PCEs) on the longitudinal downgrade of two-lane roads in Bosnia and Herzegovina has been conducted in order to determine the influence of vehicle structure under free traffic flow conditions. The research has been carried out considering the classes of vehicles at cross-sections on the downgrade of two-lane roads. As a result, the negative influence of vehicle structure under free traffic flow conditions using passenger car equivalents (PCEs) has been determined. The results show that on the downgrade of two-lane roads, the value of passenger car equivalent decreases from the level terrain to the boundary minimum value for the determined downgrade g = −3.00%, after which its value starts to increase slightly. Based on the obtained values, the models calibrated with a second-degree polynomial have been developed to determine the average value of passenger car equivalent as a function of its boundary value. The paper also compares the results obtained by the developed models with the models from the Highway Capacity Manual under free traffic flow conditions. In addition, models for the percentage values of PCE15%, PCE50% and PCE85% have been established.
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来源期刊
Baltic Journal of Road and Bridge Engineering
Baltic Journal of Road and Bridge Engineering 工程技术-工程:土木
CiteScore
2.10
自引率
9.10%
发文量
25
审稿时长
>12 weeks
期刊介绍: THE JOURNAL IS DESIGNED FOR PUBLISHING PAPERS CONCERNING THE FOLLOWING AREAS OF RESEARCH: road and bridge research and design, road construction materials and technologies, bridge construction materials and technologies, road and bridge repair, road and bridge maintenance, traffic safety, road and bridge information technologies, environmental issues, road climatology, low-volume roads, normative documentation, quality management and assurance, road infrastructure and its assessment, asset management, road and bridge construction financing, specialist pre-service and in-service training;
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