GNSS World of China

Volume 45 Issue 2
Apr.  2020
Turn off MathJax
Article Contents
WANG Yongding, CHENG Xiangyu. Study on energy saving of hybrid power ships based on BDS[J]. GNSS World of China, 2020, 45(2): 112-118. doi: DOI:10.13442/j.gnss.1008-9268.2020.02.018
Citation: WANG Yongding, CHENG Xiangyu. Study on energy saving of hybrid power ships based on BDS[J]. GNSS World of China, 2020, 45(2): 112-118. doi: DOI:10.13442/j.gnss.1008-9268.2020.02.018

Study on energy saving of hybrid power ships based on BDS

doi: DOI:10.13442/j.gnss.1008-9268.2020.02.018
  • Publish Date: 2020-04-15
  • This paper proposes a hybrid electric propulsion system based on BDS. The two main power sources of the diesel engine and the electric motor adopt PTH driving mode. The fuel and electric energy are used to provide propulsion power. Different navigation areas and speed can be selected according to BDS Power source output. After fuel economy and benefit analysis, compared with the traditional propulsion system, the application of BDS-based hybrid propulsion system reduces the operating cost of official ships by 26%, and the increased initial construction investment cost of tana business ship can be recovered within 3 years; Comprehensive fuel saving of 15% to 20%, the initial construction investment cost can be recovered within 4 years through the fuel saving method. The hybrid system based on BDS can increase propulsion redundancy, improve ship safety, and has good effects of energy saving and emission reduction and saving operating costs.

     

  • loading
  • [1]
    TECHERTCHIAN N,YVARS P A,MILLET D.Benefits and limits of a constraint satisfaction problem/life cycle assessment approach for the ecodesign of complex systems:a case applied to a hybrid passenger ferry[J].Journal of cleaner production,2013,42(3):1-18.DOI: 10.1016/j.jclepro.2012.10.048.
    [2]
    中华人民共和国交通运输部.公路水路交通运输节能减排“十三五”规划[EB/OL].[2014-03-06]http://xxgk.mot.gov.cn/jigou/fgs/201412/t20141216_297 3310.html.
    [3]
    戴彦德,周伏秋,郁聪,等.千家企业节能效果评估体系研究[EB/OL]. [2008-03]http://www.moc.gov.cn/fwxx/content2265101.htm.
    [4]
    王冉.论IMO在国际海运船舶温室气体减排上的法律进展[J].港口经济,2012(2):44-46.
    [5]
    陈扬,吴海乐.北斗系统在全球海上航运领域的应用[J].卫星应用,2019(4):16-18.
    [6]
    田向阳,乔文长.北斗卫星导航系统在船舶海上航行中的应用研究[J].数字技术与应用,2017(8):54-56.
    [7]
    张利,袁本银.GNSS多星座导航定位算法研究与实现[J].测绘,2012,35(5):195-197.
    [8]
    安庆,吴树森.北斗船舶航线监管平台系统设计与实现[J].全球定位系统,2017,42(2):50-54.
    [9]
    丁振国.基于北斗的船舶实时监控系统[J].航海技术,2011 (4):41-45.
    [10]
    任娜.北斗卫星导航系统在AIS中的应用研究[D].厦门:集美大学,2016.
    [11]
    聂乾震.北斗卫星导航系统在航海保障行业的应用思考[J].航海技术,2017(4):38-41.
    [12]
    石慧频.基于北斗的智慧船舶服务系统研究[J].企业科技与发展,2019(3):54-56.
    [13]
    中国通信标准化协会.基于移动网络的高精度定位技术研究(第一阶段)[R].北京:中国通信标准化协会,2019:3-4.
    [14]
    王玉玺,杜鹏,侯岳麟.基于电子海图的北斗船舶监管系统设计[J].世界海运,2018,41(8):25-27.
    [15]
    席龙飞.船舶油电混合动力系统建模与仿真[D].上海:上海交通大学,2014.
    [16]
    王永鼎,田晨曦,董亚龙.并联式混合动力在金枪鱼钓船上的应用研究[J].测控技术,2017,36(9):92-95.
    [17]
    柳卫东,陈兵.新造船能效设计指数及其对船舶设计的影响[J].船舶工程,2010,32(2):17-21.
    [18]
    王永鼎,田晨曦,董亚龙.基于北斗卫星导航的金枪鱼钓船混合动力节能系统设计[J].全球定位系统,2017,42(1):122-126.
    [19]
    沙锋,王永鼎,叶守建.金枪鱼延绳钓船混合动力推进系统研究与分析[J].上海海洋大学学报,2014,23(2):279-283.
    [20]
    周劲望,叶守建.柴电混合动力系统在金枪鱼延绳钓船上的应用[J].渔业信息与战略,2016,31(3):206-209.
    [21]
    舒晗,何永秀.纯电动汽车替代方案及经济性分析[J].电力科学与工程,2017,33(4):26-31.
    [22]
    张益敏,陈俐,朱剑昀.混合动力船舶动力装置及能量管理研究综述[J].舰船科学技术,2018,40(3):1-7.
    [23]
    朱维平.内河500吨位新能源纯电动船舶经济效益评价[J].交通企业管理,2018,33(3):72-74.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (326) PDF downloads(51) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return