铁道学报
鐵道學報
철도학보
Journal of the China Railway Society
2015年
11期
104-109
,共6页
膨胀土%模型试验%基床%高速铁路
膨脹土%模型試驗%基床%高速鐵路
팽창토%모형시험%기상%고속철로
expansive soil%model test%subgrade%high-speed railway
对膨胀土地区新型铁路路堑全封闭基床结构进行室内足尺模型试验,得到循环振动荷载作用下基床的动力特性。结果表明:新型全封闭基床结构中动应力沿深度的衰减规律呈指数型,速度和加速度沿深度的衰减规律成二次曲线型,说明在基床表层底面铺设半刚性结构层使振动速度和加速度的影响深度增大;基床底层底面的最大动应力、振动速度、加速度以及路基面最大动变形波动区间分别为4.09~6.13 kPa、1.72~3.15 mm/s、0.082~0.085 m/s2和0.30~0.43 mm,均小于高速铁路基床相应动力指标限值,验证了新型膨胀土路堑全封闭基床结构设计的可行性和合理性。
對膨脹土地區新型鐵路路塹全封閉基床結構進行室內足呎模型試驗,得到循環振動荷載作用下基床的動力特性。結果錶明:新型全封閉基床結構中動應力沿深度的衰減規律呈指數型,速度和加速度沿深度的衰減規律成二次麯線型,說明在基床錶層底麵鋪設半剛性結構層使振動速度和加速度的影響深度增大;基床底層底麵的最大動應力、振動速度、加速度以及路基麵最大動變形波動區間分彆為4.09~6.13 kPa、1.72~3.15 mm/s、0.082~0.085 m/s2和0.30~0.43 mm,均小于高速鐵路基床相應動力指標限值,驗證瞭新型膨脹土路塹全封閉基床結構設計的可行性和閤理性。
대팽창토지구신형철로로참전봉폐기상결구진행실내족척모형시험,득도순배진동하재작용하기상적동력특성。결과표명:신형전봉폐기상결구중동응력연심도적쇠감규률정지수형,속도화가속도연심도적쇠감규률성이차곡선형,설명재기상표층저면포설반강성결구층사진동속도화가속도적영향심도증대;기상저층저면적최대동응력、진동속도、가속도이급로기면최대동변형파동구간분별위4.09~6.13 kPa、1.72~3.15 mm/s、0.082~0.085 m/s2화0.30~0.43 mm,균소우고속철로기상상응동력지표한치,험증료신형팽창토로참전봉폐기상결구설계적가행성화합이성。
A full scale indoor dynamic model test for the structure of fully-closed railway subgrade in swelling soil area was conducted to obtain the dynamic characteristics of the subgrade under cyclic vibration load.The results indicated that the dynamic stress in the fully-closed subgrade attenuated in the form of exponential decay in the vertical direction,but velocity and acceleration attenuation curves could be fitted by quadratic polynomi-al.The laying of the semi-rigid waterproof layer under the surface of the subgrade could increase the influence depths of vibration velocity and acceleration.The maximum fluctuation interval values of dynamic stress,vi-bration velocity and acceleration on the bottom of the subgrade were 4.09~6.13 kPa,1.72~3.15 mm/s,and 0.082 ~ 0.085 m/s2 respectively,while the maximum deformation fluctuation interval value of the subgrade surface was 0.30~0.43 mm.These dynamic parameters are all less than the corresponding dynamic index lim-its of high-speed railway subgrade,validating the feasibility and rationality of the structure design for new full-y-closed subgrade in swelling soil cutting.