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Vpliv gostote prometa in načina vožnje na prometni tok ter izpuste CO2
ID Rigler, Andrej (Author), ID Turk, Goran (Author)

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Abstract
Namen prispevka je na primeru 1500 m dolge ceste z enim pasom proučiti značilnosti prometa in ugotoviti, kako na pretok in izpuste ogljikovega dioksida (CO2) vplivajo gostota vozil, omejitev hitrosti in način vožnje. V raziskavi je uporabljen mikroskopski prometni model celični avtomat (v nadaljevanju CA), imenovan razširjeni model LAI, ki vsebuje nove funkcije in je nadgrajen za izračun izpustov. Glede na rezultate prometnih simulacij so z modelom, ki so ga predstavili Panis, Broekx in Liu (2006), izračunani izpusti CO2 na prevožen kilometer. Rezultati kažejo, da je pri največji dovoljeni hitrosti 70 km/h največji pretok 2122 vozil/uro dosežen pri gostoti 0,25 vozila/celico. Med gostotama 0,22 in 0,28 vozila/celico je prometni tok v sinhronizirani fazi, v kateri zaradi medsebojnega delovanja vozil povprečna hitrost pade. Pri višjih gostotah nastajajo zastoji, povprečna hitrost še naprej pada, povečuje se količina izpustov. Najvišja do voljena hitrost vpliva na izpuste CO2 le pri nižjih gostotah, pri višjih pa nanje precej bolj vpliva stopnja pospeška. Menimo, da bi bilo v času prometnih zgostitev koristno zmanjšati gostoto prometa, da bi dosegli čim bolj optimalen pretok in zmanjšali negativne vplive na okolje, na primer s spodbujanjem občasnega dela od doma, uporabe javnega prevoza in potovanj pred ali po predvidenih prometnih konicah.

Language:Slovenian
Keywords:prometni tok, izpusti CO2, mikroskopski modeli prometnega toka, emisijski modeli, celični avtomat, razširjeni model LAI
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FF - Faculty of Arts
FGG - Faculty of Civil and Geodetic Engineering
Publication status:Published
Publication version:Version of Record
Publication date:01.01.2024
Year:2024
Number of pages:Str. 27-50, 51-73
Numbering:[Št.] 61
PID:20.500.12556/RUL-180347 This link opens in a new window
UDC:504.5:656.1(497.4)
ISSN on article:0354-0596
DOI:10.4312/DZOB1160 This link opens in a new window
COBISS.SI-ID:206359043 This link opens in a new window
Publication date in RUL:06.03.2026
Views:316
Downloads:288
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Record is a part of a journal

Title:Dela
Publisher:Oddelek za geografijo Filozofske fakultete Univerze v Ljubljani, Oddelek za geografijo Filozofske fakultete Univerze v Ljubljani, Znanstvena založba Filozofske fakultete, Založba Univerze v Ljubljani
ISSN:0354-0596
COBISS.SI-ID:23805442 This link opens in a new window

Licences

License:CC BY-SA 4.0, Creative Commons Attribution-ShareAlike 4.0 International
Link:http://creativecommons.org/licenses/by-sa/4.0/
Description:This Creative Commons license is very similar to the regular Attribution license, but requires the release of all derivative works under this same license.

Secondary language

Language:English
Title:The impact of vehicle density and driving styles on traffic flow and CO2 emissions
Abstract:
The purpose of the article is to study the traffic characteristics on a 1500 m long road with one lane and to find out how the flow and carbon dioxide (CO2) emissions are affected by the density of vehicles, the speed limit, and the way of driving. The research uses a microscopic cellular automaton traffic model (hereafter CA), called the extended LAI model, which contains new functions and is upgraded for the calculation of discharges. Based on the results of traffic simulations, CO2 emissions per kilometre driven were calculated using the model presented by Panis, Broekx and Liu (2006). The results show that the maximum flow of 2122 vehicles/hour is achieved at a maximum speed of 70 km/h and a density of 0.25 vehicles/cell. Between densities of 0.22 and 0.28 vehicles/cell, the traffic flow is in a synchronized phase, with the average speed dropping due to vehicle interaction. At higher densities, congestion occurs, the average speed continues to fall, and the amount of emissions increases. The top speed only affects CO2 emissions at lower densities, but at higher densities, they are much more affected by the acceleration rate. We believe that it would be beneficial to reduce traffic density in times of traffic congestion to achieve the most optimal flow and reduce negative impacts on the environment, for example by encouraging occasional work from home, use of public transport, and trips before or after the expected traffic peaks.

Keywords:traffic flow, CO2 emissions, microscopic traffic, flow models, emission models, cellular automata, extended LAI mode

Projects

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0260
Name:Mehanika konstrukcij

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