[1]黄波.铁路机车车辆整备设施融合设置研究[J].高速铁路技术,2024,15(03):62-67.[doi:10.12098/j.issn.1674-8247.2024.03.012]
HUANG Bo.Study on Integrated Configuration of Servicing Facilities for Rolling Stock[J].HIGH SPEED RAILWAY TECHNOLOGY,2024,15(03):62-67.[doi:10.12098/j.issn.1674-8247.2024.03.012]
点击复制
铁路机车车辆整备设施融合设置研究()
《高速铁路技术》[ISSN:1674-8247/CN:51-1730/U]
- 卷:
-
15卷
- 期数:
-
2024年03期
- 页码:
-
62-67
- 栏目:
-
研究创新
- 出版日期:
-
2024-06-20
文章信息/Info
- Title:
-
Study on Integrated Configuration of Servicing Facilities for Rolling Stock
- 文章编号:
-
1674-8247(2024)03-0062-06
- 作者:
-
黄波
-
中铁二院工程集团有限责任公司,成都 610031
- Author(s):
-
HUANG Bo
-
China Railway Eryuan Engineering Group Co. ,Ltd. ,Chengdu 610031 ,China
-
- 关键词:
-
机车车辆整备设施; 整备作业流程; 融合设置; 移车台; 总平面布置
- Keywords:
-
rolling stock servicing facilities; servicing workflows; integrated configuration; vehicle transverser; overall layout
- 分类号:
-
U279
- DOI:
-
10.12098/j.issn.1674-8247.2024.03.012
- 文献标志码:
-
A
- 摘要:
-
常规铁路机车、客车整备设施为分散设置,车站咽喉区作业量大,土地资源未得到集约利用。随着城市化发展进程和动力集中动车组的大量开行,机车车辆整备设施正逐渐趋向集中化布局。本文分析了铁路机车、客车及动力集中动车组在整备工艺流程和作业内容上的共同点。为充分推进机车车辆生产和管理的深度融合,提出机车车辆整备设施共享的可行性。基于机车牵引客车入段的作业方式,分析比较机车车辆整备基地4种总平面融合布置方案的作业流程和应用场景。以成都十陵南机车车辆整备基地的布置为例,首次提出移车台的适应性总平面布置方案,并进行出入线能力分析,总结出适应机车、客车及动力集中动车组整备设施的融合设置标准。
- Abstract:
-
Conventional locomotive and passenger car servicing facilities are typically arranged in decentralized manner,leading to high operational volumes in station throat areas and inefficient utilization of land resources. With ongoing urbanization and the increasing prevalence of centralized power multiple units,there is a growing trend towards centralized servicing setups. This paper analyzed commonalities in the servicing processes and tasks for railway locomotives,passenger cars,and centralized power multiple units,and explored the feasibility of shared servicing facilities,to promote deep integration of production and servicing of rolling stock. Based on the operational mode of locomotives towing passenger cars into depots,four distinct overall layout schemes for rolling stock servicing bases were examined,comparing their workflow and application scenarios. With Chengdu Shiling South Rolling Stock Servicing Base as a case for study,a novel adaptable layout plan incorporating vehicle transversers is presented,accompanied by an assessment of entry/exit capacity. Ultimately,standards for the integrated setup of servicing facilities catering to locomotives,passenger cars,and centralized power multiple units are derived.
参考文献/References:
[1] 张大勇. 时速160 km动力集中动车组机车车辆融合管理模式探索与研究[J]. 中国铁路,2020(3):44-48. ZHANG Dayong. Exploration and Research on Integrated Management of 160 km/h Power Concentrated EMU Trains[J]. China Railway, 2020(3):44-48.
[2] 王利军,李君临. 西双版纳站机车车辆设施整合方案研究[J].工程技术研究,2020,5(6):9-10. WANG Lijun,LI Junlin. Research on Locomotive and Rolling Stock Facilities Integration Scheme of Xishuangbanna Station[J]. Engineering and Technological Research,2020,5(6):9-10.
[3] 郭强. 机务段标准化整备场改造建设[J]. 中国铁路,2018(6):38-43. GUO Qiang. Construction of a Standardized Servicing Yard of Locomotive Depot[J]. China Railway,2018(6):38-43.
[4] 宋国义. 160 km/h动力集中动车组一体化整备作业研究[J].中国铁路,2020(7):84-89. SONG Guoyi. Research on Integrated Servicing of 160 km/h Power-concentrated EMU[J]. China Railway,2020(7):84-89.
[5] 黄波,许诚昕. 基于国外铁路维修车间设计的探索[J]. 铁道工程学报,2011,28(4):79-81. HUANG Bo,XU Chengxin. Discussion on Design of Repair Base of Railway Rolling Stock Based on Foreign Experience[J]. Journal of Railway Engineering Society,2011,28(4):79-81.
[6] 王书锋. 大功率机车标准化整备作业模式在新丰镇机务段整备场内的应用研究[J]. 铁道机车车辆,2015,35(6):82-85. WANG Shufeng. The Applied Research on Standardized Servicing Operation Mode of High Power Locomotive in Xin Feng Zhen Locomotive Depot Hold Yard[J]. Railway Locomotive & Car, 2015,35(6):82-85.
[7] 张金林. 160 km/h动力集中动车组客整所适应性改造设计探讨[J]. 铁道标准设计,2020,64(8):148-152. ZHANG Jinlin. Discussion on Adaptability Reform Design of CRH Technical Readiness for 160 km/h Power Centralized EMU Readiness Operation[J]. Railway Standard Design,2020,64(8):148-152.
[8] 丁子全. 拉萨机车车辆整备基地设计的思考[J]. 铁道运输与经济,2017,39(10):52-55. DING Ziquan. Refection on the Design of Lhasa Locomotive and Rolling Stock Servicing Depot[J]. Railway Transport and Economy, 2017,39(10):52-55.
[9] 侯黎明,王永强. 机车标准化整备棚设置研究[J]. 铁道标准设计,2018,62(8):178-183. HOU Liming,WANG Yongqiang. Research on Setting up Standardized Servicing Sheds of Locomotive[J]. Railway Standard Design,2018,62(8):178-183.
[10]王利军,王利锋,张雄. 中国高速铁路动车段及运用所设计技术发展[J]. 高速铁路技术,2020,11(4):36-42. WANG Lijun,WANG Lifeng,ZHANG Xiong. Study on Design Technology Development of EMU Depot and Workshop of China’s High-speed Railway[J]. High Speed Railway Technology,2020, 11(4):36-42.
[11]马治俊,廉文彬,刘敏,等. 大型铁路客运站普速旅客列车机车车辆一体化出入库模式研究[J]. 铁道学报,2017,39(10):10-18. MA Zhijun,LIAN Wenbin,LIU Min,et al. Study on Integration Mode for Shunting of Locomotives and Coaches of Ordinary Passenger Trains from and to Depots[J]. Journal of the China Railway Society,2017, 39(10):10-18.
备注/Memo
- 备注/Memo:
-
收稿日期:2023-07-03
作者简介:黄波(1980-),男,高级工程师。
基金项目:国家重点研发计划(2021YFB2300100);中国国家铁路集团有限公司科技研究开发计划(2019F001)
更新日期/Last Update:
2024-06-30