201219th ITS World CongressERTICO - ITS EuropeEuropean CommissionITS AmericaITS Asia-PacificRequires access

Developing a Simulation Model for Ramp Weaving Sections

Hamid Athab Al-Jameel

Open publisher page 1 citations

Abstract

Motorway weaving sections entail intensive lane changes which lead to high turbulence within such sections. Different methods, such as mathematical modeling, have been adopted to analyze traffic behavior and to determine weaving section capacity. However, simulation methods have proved to be more effective than other mathematical methods. This study focuses on developing a simulation model for ramp weave only since the data available from sites represent this configuration. Field data was used to calibrate and validate the newly developed simulation model. The results from the newly developed model showed good fit with the field data in terms of calibration and validation. The model has been applied to assess the effect of weaving length under different number of lanes for ramp weave section, the percentage of heavy goods vehicle and the different volume ratios. The results showed that weaving length has an effect on capacity up to a certain limit, after which its effect dissipates. The presence of heavy goods vehicles also causes a high reduction in the capacity of the weaving section and this reduction has been estimated. Other factors, such as volume ratio has a significant effect on the capacity of weaving section.

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What this paper is about

Motorway weaving sections entail intensive lane changes which lead to high turbulence within such sections. Different methods, such as mathematical modeling, have been adopted to analyze traffic behavior and to determine weaving section capacity. However, simulation methods have proved to be more effective than other mathematical methods. This study focuses on developing a simulation model for ramp weave only since the data available from sites represent this configuration. Field data was used to calibrate and validate the newly developed simulation model. The results from the newly developed model showed good fit with the field data in terms of calibration and validation. The model has been applied to assess the effect of weaving length under different number of lanes for ramp weave section, the percentage of heavy goods vehicle and the different volume ratios. The results showed that weaving length has an effect on capacity up to a certain limit, after which its effect dissipates. The presence of heavy goods vehicles also causes a high reduction in the capacity of the weaving section and this reduction has been estimated. Other factors, such as volume ratio has a significant effect on the capacity of weaving section.

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Available abstract

Motorway weaving sections entail intensive lane changes which lead to high turbulence within such sections. Different methods, such as mathematical modeling, have been adopted to analyze traffic behavior and to determine weaving section capacity. However, simulation methods have proved to be more effective than other mathematical methods. This study focuses on developing a simulation model for ramp weave only since the data available from sites represent this configuration. Field data was used to calibrate and validate the newly developed simulation model. The results from the newly developed model showed good fit with the field data in terms of calibration and validation. The model has been applied to assess the effect of weaving length under different number of lanes for ramp weave section, the percentage of heavy goods vehicle and the different volume ratios. The results showed that weaving length has an effect on capacity up to a certain limit, after which its effect dissipates. The presence of heavy goods vehicles also causes a high reduction in the capacity of the weaving section and this reduction has been estimated. Other factors, such as volume ratio has a significant effect on the capacity of weaving section.

Key concepts: Weaving, Section (typography), Calibration, Volume (thermodynamics), Mathematical model, Field (mathematics), Reduction (mathematics), Traffic volume

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