Volume 39 Issue 3
Jun.  2021
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HUANG Wenfeng, YANG Pengshi, DING Hui, ZHAO Yongming, ZHONG Hui, LIU Yonghong. A Quantitative Analysis on Urban Bus Emissions and Energy Consumptions under Different Road Speeds and Dwell Time[J]. Journal of Transport Information and Safety, 2021, 39(3): 93-102. doi: 10.3963/j.jssn.1674-4861.2021.03.012
Citation: HUANG Wenfeng, YANG Pengshi, DING Hui, ZHAO Yongming, ZHONG Hui, LIU Yonghong. A Quantitative Analysis on Urban Bus Emissions and Energy Consumptions under Different Road Speeds and Dwell Time[J]. Journal of Transport Information and Safety, 2021, 39(3): 93-102. doi: 10.3963/j.jssn.1674-4861.2021.03.012

A Quantitative Analysis on Urban Bus Emissions and Energy Consumptions under Different Road Speeds and Dwell Time

doi: 10.3963/j.jssn.1674-4861.2021.03.012
  • Received Date: 2021-01-16
  • A model for estimating gas or electric bus operating conditions and emissions (or energy consumptions) is developed to quantify urban bus emissions and energy consumptions under different road speeds and dwell time at different locations. This model is developed by more than 750 thousand GPS records of 5 bus lines and a large amount of floating vehicle data. The result shows that in road areas, the road speed of mixed traffic flow has a greater impact on bus emission and energy consumption than dwell time at bus stops. As the road speed increases by 5 km/h, the relativebus speed increases by 0.17, and the relative emission factor and relative energy consumption factor decrease by 0.11 and 0.06, respectively. In the bus stop area, the dwell time at the bus stop has a greater impact on bus emissions and energy consumptions than the speed on the road.As the dwell time decreases by 15 seconds; the relative bus speed increases by 0.11; the relative emission factor and relative energy consumption factor both decrease by 0.06. Increasing the speed on the road at different locations does not always significantly reduce bus emissions and energy consumptions. Thus, cooperative control of bus operation efficiency and emissions (or energy consumptions) should be carried out in the comprehensive traffic system.

     

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  • [1]
    HADAS Y, NAHUM O E. Urban bus network of priority lanes: A combined multi-objective, multi-criteria and group decision-making approach[J]. Transport Policy, 2016(52): 186-196. http://toledo.net.technion.ac.il/files/2016/07/YuvalHadas_ERANETworkshop.pdf
    [2]
    GULER S I, GAYAH V V, MENENDEZ M. Bus priority at signalized intersections with single-lane approaches: A novel pre-signal strategy[J]. Transportation Research Part C: Emerging Technologies, 2016(63): 51-70. http://smartsearch.nstl.gov.cn/paper_detail.html?id=3b6e93dacd7a64d8ebc82bb50c5ee9c6
    [3]
    ZHOU L, WANG Y Z, LIU Y D. Active signal priority control method for bus rapid transit based on vehicle infrastructure integration[J]. International Journal of Transportation Science and Technology, 2017, 6(2): 99-109. doi: 10.1016/j.ijtst.2017.06.001
    [4]
    CHEN X H, SHAN X N, YE J H, et al. Evaluating the Effects of Traffic congestion and passenger load on feeder bus fuel and emissions compared with passenger car[J]. Transportation Research Procedia, 2017(25): 616-626. http://www.sciencedirect.com/science/article/pii/S2352146517307536
    [5]
    WANG C, YE Z R, YU Y B, et al. Estimation of bus emission models for different fuel types of buses under real conditions[J]. Science of The Total Environment, 2018(640): 965-972.
    [6]
    潘玉瑾, 李媛, 陈军辉, 等. 基于交通流的成都市高分辨率机动车排放清单建立[J]. 环境科学, 2020, 41(8): 3581-3590. https://www.cnki.com.cn/Article/CJFDTOTAL-HJKZ202008017.htm

    PAN Yujin, LI Yuan, CHEN Junhui, et al. Method for high-resolution emission inventory of road vehicles in Chengdu based on traffic flow monitoring Data[J]. Environmental Science, 2020, 41(8): 3581-3590. (in Chinese) https://www.cnki.com.cn/Article/CJFDTOTAL-HJKZ202008017.htm
    [7]
    WEN Y F, ZHANG S J, ZHANG J R, et al. Mapping dynamic road emissions for a megacity by using open-access traffic congestion index data[J]. Applied Energy, 2020(260): 114357. http://www.sciencedirect.com/science/article/pii/S0306261919320446
    [8]
    WU X M, ZHANG S J, WU Y, et al. Real-world emissions and fuel consumption of diesel buses and trucks in Macao: From on-road measurement to policy implications[J]. Atmospheric Environment, 2015(120): 393-403.
    [9]
    GUO J D, GE Y S, HAO L J, et al. On-road measurement of regulated pollutants from diesel and CNG buses with urea selective catalytic reduction systems[J]. Atmospheric Environment, 2014(99): 1-9. http://www.sciencedirect.com/science/article/pii/S1352231014005548
    [10]
    PAN Y J, CHEN S Y, QIAO F X, et al. Characteristics analysis and modeling of emissions for bus with liquefied natural gas fuel system in real world driving[J]. Transportation Research Record, 2018, 2672(25): 46-56. doi: 10.1177/0361198118780826
    [11]
    YU Q, LI T Z, LI H. Improving urban bus emission and fuel consumption modeling by incorporating passenger load factor for real world driving[J]. Applied Energy, 2016(161): 101-111. http://www.sciencedirect.com/science/article/pii/S0306261915012222
    [12]
    PAN Y J, CHEN S Y, QIAO F X, et al. Estimation of real-driving emissions for buses fueled with liquefied natural gas based on gradient boosted regression trees[J]. Science of the Total Environment, 2019(660): 741-750. http://www.sciencedirect.com/science/article/pii/S0048969719300609
    [13]
    ALAM A, HATZOPOULOU M. Reducing transit bus emissions: Alternative fuels or traffic operations?[J]. Atmospheric Environment, 2014, 89(2): 129-39. http://www.sciencedirect.com/science/article/pii/S1352231014001393
    [14]
    ALAM A, HATZOPOULOU M. Investigating the isolated and combined effects of congestion, roadway grade, passenger load, and alternative fuels on transit bus emissions[J]. Transportation Research Part D: Transport and Environment, 2014(29): 12-21. http://smartsearch.nstl.gov.cn/paper_detail.html?id=9c8ba515b9b0cbb15613639482925210
    [15]
    SHAN X N, CHEN X H, JIA W J, et al. Evaluating urban bus emission characteristics based on localized moves using sparse GPS data in Shanghai, China[J]. Sustainability, 2019, 11(10): 15. http://www.researchgate.net/publication/333341812_Evaluating_Urban_Bus_Emission_Characteristics_Based_on_Localized_MOVES_Using_Sparse_GPS_Data_in_Shanghai_China
    [16]
    YU Q, LI T Z. Evaluation of bus emissions generated near bus stops[J]. Atmospheric Environment, 2014(85): 195-203. http://www.sciencedirect.com/science/article/pii/S1352231013009655
    [17]
    LI J Q, GUPTA S D, ZHANG L P, et al. Evaluate bus emissions generated near far-side and near-side stops and potential reductions by ITS: An empirical study[J]. Transportation Research Part D: Transport and Environment, 2012, 17(1): 73-77. doi: 10.1016/j.trd.2011.09.012
    [18]
    WANG C, SUN Z Q, YE Z R. On-Road bus emission comparison for diverse locations and fuel types in real-world operation conditions[J]. Sustainability, 2020, 12(5): 1798. doi: 10.3390/su12051798
    [19]
    PAN Y J, QIAO F X, TANG K, et al. Understanding and estimating the carbon dioxide emissions for urban buses at different road locations: A comparison between new-energy buses and conventional diesel buses[J]. Science Total Environment, 2020(703): 135533.
    [20]
    杨鹏史, 丁卉, 陈同, 等. 基于局部加权线性回归的城市公交车排放能耗预测[J]. 中山大学学报(自然科学版), 2019, 58(6): 111-118. https://www.cnki.com.cn/Article/CJFDTOTAL-ZSDZ201906015.htm

    YANG Pengshi, DING Hui, CHEN Tong, et al. Estimation of emissions or electricity consumptions of urban buses based on locally weighted linear regression[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni, 2019, 58(6): 111-118. (in Chinese) https://www.cnki.com.cn/Article/CJFDTOTAL-ZSDZ201906015.htm
    [21]
    陈峻, 王涛, 李春燕, 等. 城市公交车与社会车辆混合流速度模型及交通运行状态分析[J]. 中国公路学报, 2012, 25(1): 128-134+140. doi: 10.3969/j.issn.1001-7372.2012.01.019

    CHEN Jun, WANG Tao, LI Chunyan, et al. Speed models of mixed traffic flow on bus-car and vehicle and analysis of traffic running state[J]. China Journal of Highway and Transport, 2012, 25(1): 128-134+140. (in Chinese) doi: 10.3969/j.issn.1001-7372.2012.01.019
    [22]
    HE Xiaoyi, ZHANG Shaojun, KE Wenwei, et al. Energy consumption and well-to-wheels air pollutant emissions of battery electric buses under complex operating conditions and implications on fleet electrification[J]. Journal of Cleaner Production, 2018(171): 714-722. http://www.sciencedirect.com/science/article/pii/S0959652617323089
    [23]
    ZHANG Shaojun, WU Ye, HU Jingnan, et al. Can Euro Ⅴ heavy-duty diesel engines, diesel hybrid and alternative fuel technologies mitigate NOx emissions?New evidence from on-road tests of buses in China[J]. Applied Energy, 2014(132): 118-126. http://www.sciencedirect.com/science/article/pii/S0306261914006758
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