主办:陕西省汽车工程学会
ISSN 1671-7988  CN 61-1394/TH
创刊:1976年

汽车实用技术 ›› 2024, Vol. 49 ›› Issue (2): 1-5.DOI: 10.16638/j.cnki.1671-7988.2024.002.001

• 新能源汽车 •    

甲醇混合动力汽车醇耗试验研究

谢 巍,严 渊,王晓飞,王永建,刘义强   

  1. 宁波吉利罗佑发动机零部件有限公司
  • 发布日期:2024-01-30
  • 通讯作者: 谢 巍
  • 作者简介:谢巍(1992-),男,博士,工程师,研究方向为混合动力/燃料喷雾与燃烧,E-mail:xw1992@yeah.net。

Experimental Study on Methanol Consumption of Hybrid Electric Vehicle

XIE Wei, YAN Yuan, WANG Xiaofei, WANG Yongjian, LIU Yiqiang   

  1. Ningbo Geely Royal Engine Components Company Limited
  • Published:2024-01-30
  • Contact: XIE Wei

摘要: 在“碳达峰、碳中和”背景下,燃料的多元化,以及深度融合的电动技术与发动机技 术,成为更加符合我国资源国情的战略方向之一。其中,甲醇以其制备技术成熟、来源广泛 等优势作为替代燃料,极具潜力。文章基于某款甲醇混合动力汽车(采用甲醇/汽油双燃料供 给系统搭配混动技术),对其在世界轻型汽车测试循环工况(WLTC)和实际道路中的醇耗表 现展开研究。试验结果表明,该甲醇混合动力系统的能量利用效率为 36.55%。随着实际车速 大于标准车速的比例逐渐增加,WLTC 循环的整体驱动能量逐渐增大,醇耗随之增加。在实 际道路中车辆不开空调的情况下,市区和郊区的甲醇消耗水平分别在 8.83 L/100 km 和 8.65 L/ 100 km。

关键词: 混合动力汽车;醇耗试验;燃料性质;WLTC

Abstract: Under the background of "Carbon Peak and Carbon Neutral", the diversification of fuels, as well as the deep integration of electric technology and engine technology, has become one of the strategic directions more in line with China's national resource situation. Among them, methanol has great potential as an alternative fuel due to its mature preparation technology and wide range of sources. Based on a methanol hybrid vehicle (using a methanol/gasoline dual-fuel supply system with hybrid technology), the article investigates its performance in terms of alcohol consumption in the world light duty vehicle test cycle (WLTC) and on real roads. The test results show that the energy utilization efficiency of the methanol hybrid system is 36.55%. As the proportion of actual vehicle speed greater than the standard speed gradually increases, the overall driving energy of the WLTC cycle gradually increases, and the alcohol consumption increases as a result. The methanol consumption levels in the urban and suburban areas are in the range of 8.83 L/100 km and 8.65 L/100 km, respectively, when the vehicle is not air-conditioned in the actual road.

Key words: Hybrid electric vehicle; Experimental on methanol consumption; Fuel properties; WLTC