铁道建筑
鐵道建築
철도건축
Railway Engineering
2015年
10期
31-37
,共7页
高速铁路%大跨度简支梁%容许动力系数
高速鐵路%大跨度簡支樑%容許動力繫數
고속철로%대과도간지량%용허동력계수
High speed railway%Long-span simply-supported girder%Allowable impact factor
我国高速铁路运营里程已经占全球1/2 以上,预制架设的简支梁桥占我国高速铁路桥的绝大部分,研究预制架设大跨度简支梁对推动我国高速铁路桥梁技术进步十分必要.本文的研究及设计统计结果表明,对于高速铁路简支梁设计,跨度≤32 m 由基频限值控制,随着跨度增大,梁端转角限值的影响越来越大.分析不同基频的简支梁在运营列车作用下的动力系数发现,大跨简支梁车桥动力效应不明显.40 m简支梁试设计证明梁体质量可以控制在1 000 t以内,因此目前的运架设备通过改造可以满足其运输架设要求.此外,在一定条件下使用40 m简支梁将带来巨大的经济效益.
我國高速鐵路運營裏程已經佔全毬1/2 以上,預製架設的簡支樑橋佔我國高速鐵路橋的絕大部分,研究預製架設大跨度簡支樑對推動我國高速鐵路橋樑技術進步十分必要.本文的研究及設計統計結果錶明,對于高速鐵路簡支樑設計,跨度≤32 m 由基頻限值控製,隨著跨度增大,樑耑轉角限值的影響越來越大.分析不同基頻的簡支樑在運營列車作用下的動力繫數髮現,大跨簡支樑車橋動力效應不明顯.40 m簡支樑試設計證明樑體質量可以控製在1 000 t以內,因此目前的運架設備通過改造可以滿足其運輸架設要求.此外,在一定條件下使用40 m簡支樑將帶來巨大的經濟效益.
아국고속철로운영리정이경점전구1/2 이상,예제가설적간지량교점아국고속철로교적절대부분,연구예제가설대과도간지량대추동아국고속철로교량기술진보십분필요.본문적연구급설계통계결과표명,대우고속철로간지량설계,과도≤32 m 유기빈한치공제,수착과도증대,량단전각한치적영향월래월대.분석불동기빈적간지량재운영열차작용하적동력계수발현,대과간지량차교동력효응불명현.40 m간지량시설계증명량체질량가이공제재1 000 t이내,인차목전적운가설비통과개조가이만족기운수가설요구.차외,재일정조건하사용40 m간지량장대래거대적경제효익.
Over a half mileage of high speed railway all over the world is built in china. The majority of high speed railway bridge employed simply-supported girders which were precast in factorys and erected in-site. T he study on long-span simply-supported girder was important for the development of China high speed railway bridge technique. In this paper,investigation and statistical analysis of high speed railway bridge design shows that the fundamental frequency limit was the most important design factor for the girder which span is within 32 m. W ith the increase of span,the angle limit is getting more important. Dynamic response is not significant through analysis of impact facotr of simply-supported girders with different fundamental frequency and under the action of high speed train. T he weight of 40 m girder may be controlled within 1 000 t,satisfying the current requirement of transportation and erection. Besides,it may bring huge economic benefits.