Abstract:Calculation parameters related to the design of live load is one of the main factors for bridge design. Shanxi Central-south Region Railway is the first I grade artery line with large axle-weight freight train in China, the live load of which is beyond the stipulations of current code. The calculation parameters of the live load of this railway is also different from those of current code. In order to satisfy the design of bridges with such large axle-weight freight train load, this paper studied the methods for calculating the live load parameters such as dynamic coefficient, centrifugal force coefficient, traction coefficient, braking force coefficient, lateral oscillation force and derailment load, and proposed the applicable calculation method and values.Research conclusions:(1) Dynamic coefficient: using literature [8] (the former Soviet Union code). (2) Centrifugal factor coefficient: using clause 4.3.6 in <Fundamental code for design on railway bridge and culvert>, but the position of centrifugal force is 2.2 m above the rail top. (3) Braking or traction coefficient: using the custom calculation methods recommended by literature [3]. (4) Lateral oscillation force: follow the literature [5] (Chinese code), to be safe, the lateral oscillation force use 120 kN . (5) Train derailment forces: improved 1.2 times, which is the ratio of uniform load in current load diagram to that in Chinese railway standard live load. (6) The research results can be used directly to the design of railway bridges with large axle-weight freight train.
李黎,郭治胜,孔德艳. 山西中南部铁路桥梁设计活载计算参数研究[J]. 铁道工程, 2014, 31(10): 64-68.
LI Li, GUO Zhi-sheng, KONG De-yan. Research on Calculation Parameters of Live Load for the Bridge Design of Shanxi Central-south Region Railway. 铁道工程, 2014, 31(10): 64-68.
[1] 辛学忠,张玉玲,戴福忠,等. 铁路列车活载图式[J]. 中国铁道科学,2006(2):31-36. Xin Xuezhong, Zhang Yuling, Dai Fuzhong, etc. Live Load Representative Figure in Railway Design[J]. China Railway Science, 2006(2):31-36. [2] 戴福忠,陈雅兰. 重载铁路桥梁设计列车标准活载的研究[J]. 中国铁道科学,2004(4):81-85. Dai Fuzhong, Chen Yalan. Study on the Standard Live Load of a Train for the Design of Heavy Load Railway Bridges[J]. China Railway Science, 2004(4):81-85. [3] 李黎,郭志胜,孔德艳. 山西中南部铁路通道桥梁设计活载标准及相关参数研究报告[R]. 天津:铁道第三勘察设计院集团有限公司,2009. Li Li, Guo Zhisheng, Kong Deyan. Research Report of the Standard Live Load and Relative Parameters for the Bridge Design of Shanxi Central-south Region Railway Corridor[R]. Tianjin:The Third Railway Survey and Design Institute Group Corporation, 2009. [4] 铁科技函[2006]60号,关于印发铁路桥梁活载标准的研究科研成果评审意见的通知[S]. Railway Science and Technology Letter[2006]No.60,Announcement on Issue of Experts′ Comments on Scientific Research Achievements of Standard Live Load for Railway Bridge[S]. [5] TB 10002.1—2005,铁路桥涵设计基本规范[S]. TB 10002.1—2005,Fundamental Code for Design on Railway Bridge and Culvert[S]. [6] BS 5400,钢桥、混凝土桥及结合桥[S]. BS 5400,Steel Bridge, Concrete Bridge and Composite Bridge[S]. [7] 德国DIN标准化研究所.德国工业标准DIN 101专业报告-桥梁荷载[M]. 柏林:博伊特出版社有限公司,2003. German DIN Standard Institute. GermanDIN Special Report 101-Bridge Loading[M]. Berlin: Yite Press Co. Ltd, 2003. [8] 原苏联国家建设委员会编,毕旌扬译. 公路、铁路、城市道路桥涵设计规范[S]. National Construction Commission of the Soviet Union, Translated by Bi Jingyang.Code for Design on Bridge and Culvert of Highway, Railway and Urban Road[S]. [9] AREMA. Manual for Railway Engineering[EB/OL]. http://www.arema.org. [10]北京铁路局,中国铁道科学研究院.大秦线2万吨货车条件下线、桥、路基动载试验和检测总报告[R]. 北京:中国铁道科学研究院,2005. Beijing Railway Bureau, China Academy of Railway Sciences. Dynamic Load Test Report of Track, Bridge and Subgrade on Datong-Qingdao Railway Line with 20000t Heavy Freight Car Passing[R]. Beijing: China Academy of Railway Sciences, 2005. [11]刘志勇,段淑敏,高伟. 无缝线路上铁路桥梁墩台制动力的计算方法[J]. 铁道工程学报,2005(6):20-24. Liu Zhiyong,Duan Shumin,Gao Wei,The Applicable Calculation Method of Piers′ and Abutments′ Braking Force of Railway Bridge on Jointless Track[J]. Journal of Railway Engineering Society,2005(6):20-24.