On the Feasibility of Transition to Electric Vehicles

被引:0
|
作者
Beloborodov S.S. [1 ]
Gasho E.G. [2 ]
Nenashev A.V. [1 ]
机构
[1] NP “Energoeffektivnyy Gorod”, Moscow
[2] National Research University “Moscow Power Engineering Institute”, Moscow
关键词
brake pads; electric buses; electric capacity; electric modes; electric vehicles; harmful emissions; power system; road surface; tires;
D O I
10.1007/s10749-024-01789-9
中图分类号
学科分类号
摘要
Calculations show that the daily maximum electrical power for charging electric vehicles in the Moscow energy system when transitioning from gasoline and diesel fuel to electricity can range from 9.6 to 28.4 GW. The additional volume of fuel for electricity generation in the Moscow energy system may amount to 35% of the current consumption. An increase in electrical energy consumption for charging electric vehicles leads to a deterioration in the electrical load conditions of generating equipment. Currently, when assessing the environmental efficiency of electric vehicles, emissions of harmful substances resulting from wear of tires, pads, and road surfaces are not taken into account. The transition to electric vehicles will increase emissions rather than reduce them, even without taking the additional emissions from increased fuel consumption at power plants into account. © Springer Science+Business Media, LLC, part of Springer Nature 2024.
引用
收藏
页码:155 / 162
页数:7
相关论文
共 50 条
  • [1] Feasibility of Electric Vehicles in Developed Country
    Zhang, Linxian
    Li, Ping
    ADVANCES IN COMPUTER SCIENCE, ENVIRONMENT, ECOINFORMATICS, AND EDUCATION, PT IV, 2011, 217 : 335 - +
  • [2] Economic feasibility of electric vehicles: A case study
    Cheok, Quentin
    Husaini, Nurul Hafizan
    Nauman, Malik Muhammad
    ENERGY STORAGE, 2022, 4 (03)
  • [3] The Analysis for the Feasibility of the Widespread Use of Electric Vehicles
    Du Shiyu
    Wang Xiru
    Ding Huirui
    2011 INTERNATIONAL CONFERENCE ON ELECTRONICS, COMMUNICATIONS AND CONTROL (ICECC), 2011, : 3984 - 3987
  • [4] The feasibility of solar parking lots for electric vehicles
    Figueiredo, Raquel
    Nunes, Pedro
    Brito, Miguel C.
    ENERGY, 2017, 140 : 1182 - 1197
  • [5] Economic Feasibility of Fuel Cell Electric Vehicles in Bangladesh
    Islam, Sharika Manjuma
    Al Ferdous, Sambit
    Jamal, Taskin
    2022 INTERNATIONAL CONFERENCE ON ENERGY AND POWER ENGINEERING, ICEPE, 2022,
  • [6] Feasibility Analysis for the Penetration of Electric Vehicles in India in Future
    Jain, Ankuja
    Jariwala, Hitesh R.
    Mhaskar, Uday
    2019 8TH IEEE INTERNATIONAL CONFERENCE ON COMPUTATION OF POWER, ENERGY, INFORMATION AND COMMUNICATION (ICCPEIC'19), 2019, : 68 - 72
  • [7] ELECTRIC VEHICLES IN SERBIA: INSTRUMENT FOR THE ENERGY TRANSITION?
    Kuzman, Milos
    PRAVNI ZAPISI, 2023, 14 (02): : 476 - 494
  • [8] Quantifying the costs of a rapid transition to electric vehicles
    Riesz, Jenny
    Sotiriadis, Claire
    Ambach, Daisy
    Donovan, Stuart
    APPLIED ENERGY, 2016, 180 : 287 - 300
  • [9] Analyzing the transition to electric drive vehicles in the US
    Greene, David L.
    Park, Sangsoo
    Liu, Changzheng
    FUTURES, 2014, 58 : 34 - 52
  • [10] Technical Feasibility Assessment of Electric Vehicles: An Abu Dhabi Example
    Al Junaibi, Reem
    Viswanath, Asha
    Farid, Amro M.
    2013 INTERNATIONAL CONFERENCE ON CONNECTED VEHICLES AND EXPO (ICCVE), 2013, : 410 - 417