周伟

个人信息Personal Information

教授

博士生导师

硕士生导师

教师英文名称:David Zhou

教师拼音名称:zhouwei

出生日期:1982-09-08

入职时间:2013-01-14

所在单位:极端流动力能前沿科学中心

职务:实验室副主任

学历:博士研究生毕业

办公地点:中南大学铁道校区高速列车研究中心203办公室

性别:男

联系方式:联系电话:0731-82655294 Email: gszx_zhouwei@csu.edu.cn 或 zhou_wei000@126.com 或 124575608@qq.com

学位:工学博士学位

在职信息:在职

主要任职:博士生导师,学硕/ 专硕导师

其他任职:世界交通运输大会(WTC)轨道交通学部轨道交通装备系统科学“机车车辆”技术委员会 联合主席

毕业院校:中南大学

学科:交通运输工程

论文成果

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Deflection calculation and dynamic detection of non-uniform beam via multi-point strain measurement for freight trains

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影响因子:4.076

DOI码:10.1109/ACCESS.2019.2929649

发表刊物:IEEE Access

关键字:deflection calculation, well-hole freight train, strain measurement, non-uniform beam, safety evaluation.

摘要:In railway freight transport, vertical deflection of load-carrying beam on well-hole car accounts for most clearance intrusions at the bottom when running on curves. This work proposed a deflection calculation and detection method via in-transit strain measurement at multiple beam locations. First, theoretical mechanical model between deflection curve and support strains is built, by defining the variable function of bending moment and second moment of area. Quadratic integration constants is calculated employing the symmetric boundary conditions in angle and deflection. Then, proposed analytical model is validated by numerical simulation and on-site experiment. Beam deflections by proposed method deviate from simulation within 4.96%, while that deviation rises up to 8.11% in loading experiment due to loading difference. In application, in-transit strain data are collected at the two support bottoms. Dynamic and synthetic deflection of load-carrying beams on different line curves is analyzed by theoretical analysis. The maximum deflection reaches 26.1 mm in dynamic and 65.5 mm in synthetic when the freight train runs on a 405-m radius line curve at the speed of 17.2 km/h. In safety evaluation, maximum rigid transformer displacement is calculated by identified load and measured suspension stiffness coefficient. Considering beam deflection and suspension displacement, the maximum vertical movement of transformer is 110.4 mm, which does not exceed the allowable distance, 250 mm. Research outcomes demonstrate the effectiveness and reliability of the proposed method, which enables the real-time deflection detection and safety evaluation in freight train transport, as well as estimation of the maximum deflection in forthcoming transport.

备注:JCR-Q1

论文类型:期刊论文

卷号:7

页面范围:104692-104709

是否译文:

发表时间:2019-07-11