铁路驼峰调车场尾部坡度与停车器布置防溜效果仿真研究  被引量:12

Simulation Study on Anti-rolling Effect of Tail Grade and Stop Device Layout at Hump Shunting Yard

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作  者:保鲁昆[1] 陈伟杰[2] 赵庆宇[2] 王哲尧 杜旭升[1] 邹正丰 BAO Lu-kun CHEN Wei-jie ZHAO Qing-yu WANG Zhe-yao DU Xu-sheng Z(Transportation and Economics Research Institute, China Academy of Railway Science, Beijing 100081, China Sujiatun Station, Shenyang Railway Administration, Shenyang 110101, Liaoning, China Postgraduate Department, China Academy of Railway Sciences, Beijing 100081, China School of Transportation and Logistics, Southwest Jiaotong University, Chengdu 610031, Sichuan, China)

机构地区:[1]中国铁道科学研究院运输及经济研究所,北京100081 [2]沈阳铁路局苏家屯站,辽宁沈阳110101 [3]中国铁道科学研究院研究生部,北京100081 [4]西南交通大学交通运输与物流学院,四川成都610031

出  处:《铁道运输与经济》2017年第7期35-41,共7页Railway Transport and Economy

基  金:中国铁路总公司科技研究开发计划课题(2016X008-I;2016X008-H);中国铁道科学研究院科研项目(2015YJ064)

摘  要:为提高铁路驼峰调车场尾部防溜安全性,阐述驼峰调车场尾部停车器布置现状及存在问题,针对调车场尾部线路坡度多样、停车防溜设备布置方案不同及溜放车辆随机变化的特点,设计驼峰调车场尾部防溜仿真系统及相关参数设置,通过对调车场线路有效长?850??m?和?1?050??m???2?种情况下不同线路尾部坡度和不同停车器布置方案进行仿真试验,得到尾部不同坡度和停车器布置的防溜方案,为驼峰调车场停车防溜系统的防溜效果验证和相关设计提供可靠的技术手段。In order to increase anti-rolling safety at the tail of railway hump shunting yard,this paper summarizes both the status and problems of stop device layout at the tail area,targeting the characteristics of tail area,including diversified line grades,different layout stopping schemes for anti-rolling devices,and random change of rolling vehicles,a anti-rolling simulation system for tail of hump shunting yard and relative parameters are designed.Through making simulation test on the tail grade of different lines and different layout schemes of stopping device under 2 conditions(the effective length of line in shunting yard of 850 m and 1 050m),the anti-rolling schemes of different tail grades and stopping device layout are achieved,so as to provide reliable technical approaches for the anti-rolling effect validation,and the relative design of stopping and anti-rolling system at hump shunting yard.

关 键 词:铁路 驼峰调车场 停车防溜 停车器布置 尾部坡度 仿真 

分 类 号:U270.35[机械工程—车辆工程] TP391.9[交通运输工程—载运工具运用工程]

 

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