Simulation of the Service Center for Vehicles on Liquefied Petroleum Gas

被引:0
|
作者
Gabsalikhova, Larisa M. [1 ]
Makarova, Irina V. [1 ]
Buyvol, Polina A. [1 ]
Mavrin, Vadim G. [1 ]
Shubenkova, Ksenia A. [1 ]
机构
[1] Kazan Fed Univ, Kazan, Russia
来源
HELIX | 2019年 / 9卷 / 04期
关键词
Branded Service Network; Safety; Vehicles on Gas; Environmental Friendliness; Maintenance; EMISSIONS;
D O I
10.29042/2019-5217-5220
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The purpose of the research is developing tools for forecasting changes in the service system when expanding the fleet of gas-engine vehicles. Research objectives: consideration methods for reducing emissions of harmful substances in exhaust gases of motor vehicles, consideration the features of the organization of technological processes in the service system when launching vehicles with alternative fuel to the market, developing a simulation model of a service center specializing in the repair and maintenance of diesel and gas vehicles. The following research methods were used: methods of system analysis and mathematical statistics, simulation. Three groups of measures aimed at reducing harmful substances in vehicle exhaust gases are described. It is shown that the usage of gas as an alternative fuel has good prospects for reducing the load on the environment. Achieved results: the developed simulation model can be used to conduct a computer experiment to select the optimal parameters for the operation of an auto service enterprise serving vehicles on both conventional diesel and compressed natural gas.
引用
收藏
页码:5217 / 5220
页数:4
相关论文
共 50 条
  • [21] The Application of the Safety Assessment of Liquefied Petroleum Gas and Liquefied Natural Gas in The Safety Management
    Chen, Sining
    Duo, Yinquan
    Wei, Lijun
    THEORY AND PRACTICE OF RISK ANALYSIS AND CRISIS RESPONSE, PROCEEDINGS, 2008, : 501 - 506
  • [22] Supramolecular fluorescence sensor for liquefied petroleum gas
    Zhan, Yi-Yang
    Liao, Jingyuan
    Kajita, Mizuho
    Kojima, Tatsuo
    Takahashi, Satoshi
    Takaya, Tomohisa
    Iwata, Koichi
    Hiraoka, Shuichi
    COMMUNICATIONS CHEMISTRY, 2019, 2 (1)
  • [23] Simulation of engine faults and their impact on emissions and vehicle performance for a liquefied petroleum gas taxi
    Organ, Bruce
    Huang, Yuhan
    Zhou, John L.
    Yam, Yat-Shing
    Mok, Wai-Chun
    Chan, Edward F. C.
    SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 716
  • [24] CFD simulation of temperature field of liquefied petroleum gas storage in pool fire environment
    Xing, Zhi-Xiang
    Zhou, Yan
    Dongbei Daxue Xuebao/Journal of Northeastern University, 2011, 32 (SUPPL. 2): : 326 - 328
  • [25] IMPREGNATION OF WOOD WITH LIQUEFIED PETROLEUM GAS SOLUTIONS
    ARGANBRIGHT, DG
    HOLZFORSCHUNG, 1973, 27 (05) : 162 - 168
  • [26] ODERANT INJECTION FACILITIES FOR LIQUEFIED PETROLEUM GAS
    不详
    BRITISH CHEMICAL ENGINEERING, 1970, 15 (02): : 242 - &
  • [27] Modelling liquefied petroleum gas storage and distribution
    Stebel, SL
    Neves, F
    Arruda, LVR
    Fabro, JA
    Rodrigues, LCA
    EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING - 12, 2002, 10 : 805 - 810
  • [28] A REVIEW OF THE DISPERSION OF LIQUEFIED PETROLEUM GAS IN THE ATMOSPHERE
    SEETO, BCM
    BOWEN, AJ
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 1983, 15 (1-3) : 91 - 102
  • [29] Design for manufacturability of the Liquefied Petroleum Gas cylinder
    Gopalakrishnan, B
    Pericherla, R
    6TH INDUSTRIAL ENGINEERING RESEARCH CONFERENCE PROCEEDINGS: (IERC), 1997, : 778 - 782
  • [30] Supramolecular fluorescence sensor for liquefied petroleum gas
    Yi-Yang Zhan
    Jingyuan Liao
    Mizuho Kajita
    Tatsuo Kojima
    Satoshi Takahashi
    Tomohisa Takaya
    Koichi Iwata
    Shuichi Hiraoka
    Communications Chemistry, 2