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右转匝道左置形式下匝道连续分流最小间距
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作者 潘兵宏 彭俊宁 +4 位作者 马朝辉 周乾 卢涛 佘明星 刘娟 《北京工业大学学报》 北大核心 2025年第7期811-824,共14页
为便于驾驶员在立交右转匝道左置形式中连续分流的情况下及时识别前方路况,对右转匝道左置形式下连续分流的最小间距开展研究。首先,基于《公路立体交叉设计细则》并考虑到实际工程意义与驾驶人行为,重新界定了右转匝道左置形式的连续... 为便于驾驶员在立交右转匝道左置形式中连续分流的情况下及时识别前方路况,对右转匝道左置形式下连续分流的最小间距开展研究。首先,基于《公路立体交叉设计细则》并考虑到实际工程意义与驾驶人行为,重新界定了右转匝道左置形式的连续分流间距范围,并区分不同车道数的分流形式。其次,分析了不同匝道连续分流形式最不利行驶条件下车辆的行驶需求和特征,据此建立了匝道连续分流间距计算模型。最后,采用无人机(unmanned aerial vehecle,UAV)航拍方式及Tracker图像识别软件,分析右转匝道左置形式下匝道连续分流区车辆运行速度、车头时距分布及换道行为特征等,确定模型中关键参数取值,通过计算提出了右转匝道左置形式下双车道和三车道匝道连续分流最小间距建议值。该研究可为右转匝道左置形式的相关设计提供参考,为完善相关规范与设计细则提供参考。 展开更多
关键词 互通式立交 右转匝道左置 连续分流 间距 换道模型 车头时距分布
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互通式立交匝道连续分流点最小间距研究 被引量:12
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作者 高建平 廖丽 《重庆交通大学学报(自然科学版)》 CAS 北大核心 2014年第2期103-107,共5页
匝道连续分流点间距是互通式立交规划设计的重点,对交通运行有重要影响。首先分析了交通量、运行速度、交通标志布置对匝道连续分流点最小间距的影响;其次,结合现场调研,分析匝道连续分流区车辆换道行为和不同换道型式下最小间距组成,... 匝道连续分流点间距是互通式立交规划设计的重点,对交通运行有重要影响。首先分析了交通量、运行速度、交通标志布置对匝道连续分流点最小间距的影响;其次,结合现场调研,分析匝道连续分流区车辆换道行为和不同换道型式下最小间距组成,运用交通冲突技术对不同车道变换型式进行交通安全评价;基于驾驶员行为理论和可接受间隙理论,从交通标志识认距离、车辆换道所需的最小安全距离、减速车道长度等3方面,建立互通式立交匝道连续分流点最小间距计算模型;最后通过实例验证了最小间距计算模型的可靠性,可以为山地城市互通式立交规划设计提供技术参考。 展开更多
关键词 交通工程 互通式立交 匝道 连续分流 最小间距 车道变换模型
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Analysis of one-dimensional consolidation of fractional viscoelastic saturated soils under continuous drainage boundary conditions 被引量:1
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作者 CUI Peng-lu CAO Wen-gui +2 位作者 XU Zan WEI Yun-bo ZHANG Jia-chao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第11期3745-3756,共12页
This paper presents the one-dimensional(1D)viscoelastic consolidation system of saturated clayey soil under continuous drainage boundaries.The fractional-derivative Merchant(FDM)model has been introduced into the cons... This paper presents the one-dimensional(1D)viscoelastic consolidation system of saturated clayey soil under continuous drainage boundaries.The fractional-derivative Merchant(FDM)model has been introduced into the consolidation system to simulate the viscoelasticity.Swartzendruber’s flow law is also introduced to describe the non-Darcian flow characteristics simultaneously.The generalized numerical solution of the 1D consolidation under continuous boundaries is given by the finite difference scheme.Furthermore,to illustrate the effectiveness of the numerical method,two simplified cases are compared against the current analytical and numerical results.Finally,the effects of boundary parameters and model parameters on the viscoelastic consolidation were illustrated and discussed.The results indicated that the boundary parameters have a significant influence on consolidation.The larger the values of boundary parameters,the faster the whole dissipation of the excess pore-water pressure and soils’settlement rate.Fractional-order and viscosity parameter have little effect on consolidation,which are primarily significant in the middle and late consolidation phases.With the increase of the modulus ratio,the whole consolidation process becomes faster.Moreover,considering Swartzendruber’s flow delays the consolidation rate of the soil layer. 展开更多
关键词 continuous drainage boundaries fractional-derivative Swartzendruber’s flow finite difference method VISCOELASTIC
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Is Terzaghi's effective stress a stress variable under seepage conditions? 被引量:1
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作者 雷国辉 赵仲辉 吴宏伟 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2316-2321,共6页
From the continuum mechanics perspective, an attempt was made to clarify the role of Terzaghi's effective stress in the theoretical analysis of saturated soil subjected to seepage. The necessity of performing a co... From the continuum mechanics perspective, an attempt was made to clarify the role of Terzaghi's effective stress in the theoretical analysis of saturated soil subjected to seepage. The necessity of performing a coupled hydromechanical analysis to solve the seepage-deformation interaction problem was illustrated by examining the equations of static equilibrium among the effective stress, seepage force, pore-water pressure and total stress. The conceptual definition of stress variable that satisfies the principles of continuum mechanics is applied in the coupled hydromechanical analysis. It is shown that Terzaghi's effective stress is in fact not a stress variable under seepage conditions, and the seepage force acting on the soil skeleton cannot be viewed as a body force. This offers a clue to the underlying cause of a paradox between the real Pascal's hydrostatic state and the hydrostatic state predicted by a class of continuum hydromechanical theories. 展开更多
关键词 seepage-deformation interaction coupled hydromechanical analysis representative elementary volume stress variable stress state variable
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