铁道标准设计
鐵道標準設計
철도표준설계
RAILWAY STANDARD DESIGN
2013年
12期
18-22
,共5页
客运专线%轨道%路基%地基系统%耦合振动%线路临界速度%软土地基
客運專線%軌道%路基%地基繫統%耦閤振動%線路臨界速度%軟土地基
객운전선%궤도%로기%지기계통%우합진동%선로림계속도%연토지기
passenger dedicated line%track-subgrade-groundwork system%coupling vibration%critical speed of railway line%soft ground
针对我国客运专线线路的实际情况,建立移动荷载作用下轨道路基地基耦合系统振动模型,分析路堤上有砟与无砟轨道情况下轨道路基地基系统临界速度,并讨论基床变形模量和基床厚度对系统临界速度的影响。分析结果表明:单个移动荷载作用下轨道路基地基系统中存在一临界速度,可称为线路临界速度;线路临界速度主要由轨道抗弯刚度、轨道路基的参振质量和地基土层的弹性模量决定;提高线路临界速度的措施有:增加轨道抗弯刚度、对软土地基进行改良加固、选用轻质路基填筑材料以减小路基的参振质量。
針對我國客運專線線路的實際情況,建立移動荷載作用下軌道路基地基耦閤繫統振動模型,分析路隄上有砟與無砟軌道情況下軌道路基地基繫統臨界速度,併討論基床變形模量和基床厚度對繫統臨界速度的影響。分析結果錶明:單箇移動荷載作用下軌道路基地基繫統中存在一臨界速度,可稱為線路臨界速度;線路臨界速度主要由軌道抗彎剛度、軌道路基的參振質量和地基土層的彈性模量決定;提高線路臨界速度的措施有:增加軌道抗彎剛度、對軟土地基進行改良加固、選用輕質路基填築材料以減小路基的參振質量。
침대아국객운전선선로적실제정황,건립이동하재작용하궤도로기지기우합계통진동모형,분석로제상유사여무사궤도정황하궤도로기지기계통림계속도,병토론기상변형모량화기상후도대계통림계속도적영향。분석결과표명:단개이동하재작용하궤도로기지기계통중존재일림계속도,가칭위선로림계속도;선로림계속도주요유궤도항만강도、궤도로기적삼진질량화지기토층적탄성모량결정;제고선로림계속도적조시유:증가궤도항만강도、대연토지기진행개량가고、선용경질로기전축재료이감소로기적삼진질량。
In view of actual situation of passenger dedicated line in China, a vibration model of the coupling system of track-subgrade-groundwork under the action of moving load was established, and the critical speed of the track-subgrade-groundwork system was analyzed under the conditions of ballasted track and ballastless track respectively on the embankment. Further on, the influences of deformation modulus and thickness of subgrade bed on the critical speed were discussed. The results show that there is a critical velocity in the track-subgrade-groundwork system under the action of a single moving load, and this critical velocity can be called the critical speed of railway line. Moreover, this critical speed of railway line is mainly dominated by the factors:the flexural rigidity of the track, the vibration mass of the track-subgrade, and the elastic modulus of ground soil. To increase the critical speed of railway line, there are some useful measures as follows: increasing the bending stiffness of track, improving and strengthening the soft ground, and selecting the light subgrade filling material to reduce the vibration mass of subgrade.