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电气化铁道地面带电自动过分相系统探讨 被引量:4
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作者 张彩霞 《技术与市场》 2020年第2期155-155,157,共2页
地面带电自动过分相技术为重载、高速和高速的电气化铁路主要技术,且是目前电气化铁路牵引供电方向的全新技术,其通过先进系统技术使电气化铁路接触网三相供电的技术缺憾弥补。以此,对电气化铁道地面带电自动过分相系统进行分析。
关键词 电气化 铁道路面 自动过分相 铁道地面
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浅谈地铁地面车站建筑设计技术特点 被引量:2
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作者 张海鸣 《科技资讯》 2011年第4期80-80,共1页
通过介绍天津地铁2号线李明庄站的建筑设计实例以及设计经验的总结,较具体地分析及讨论了地铁地面车站建筑设计的合理性,同时也从中探讨了在充分发挥地铁车站功能的前提下,如何通过合理的设计降低地铁工程投资。
关键词 地下铁道地面车站 建筑设计 合理性
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Study on influence of ground settlement in bored metro tunnel
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作者 方江华 张志红 《Journal of Coal Science & Engineering(China)》 2006年第2期27-29,共3页
At present the bored construction method is one of the main construction methods of metro and tunnel construction in China. The empirical estimated formulas of tunnel ground surface settlement using the bored construc... At present the bored construction method is one of the main construction methods of metro and tunnel construction in China. The empirical estimated formulas of tunnel ground surface settlement using the bored construction method were obtained, combining the mechanical stimulant calculated result of tunnel model of different embedded depth, different cross section and different construction method and the actual measurement data of Beijing metro construction. According to the regressed analysis of calculated data, the calculated equations of ground surface settlement value and settlement range of tunnel section under the condition of different embedded depth, different cross section and different construction method were gained. Among them there are some empirical formulas can apply to the construction design of metro tunnel directly. 展开更多
关键词 bored construction method ground settlement settlement groove width modulus settlement range
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Ground-borne vibrations due to dynamic loadings from moving trains in subway tunnels 被引量:12
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作者 Xue-cheng BIAN Wan-feng JIN Hong-guang JIANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2012年第11期870-876,共7页
In this study,ground vibrations due to dynamic loadings from trains moving in subway tunnels were investigated using a 2.5D finite element model of an underground tunnel and surrounding soil interactions.In our model,... In this study,ground vibrations due to dynamic loadings from trains moving in subway tunnels were investigated using a 2.5D finite element model of an underground tunnel and surrounding soil interactions.In our model,wave propagation in the infinitely extended ground is dealt with using a simple,yet efficient gradually damped artificial boundary.Based on the assumption of invariant geometry and material distribution in the tunnel's direction,the Fourier transform of the spatial dimension in this direction is applied to represent the waves in terms of the wave-number.Finite element discretization is employed in the cross-section perpendicular to the tunnel direction and the governing equations are solved for every discrete wave-number.The 3D ground responses are calculated from the wave-number expansion by employing the inverse Fourier transform.The accuracy of the proposed analysis method is verified by a semi-analytical solution of a rectangular load moving inside a soil stratum.A case study of subway train induced ground vibration is presented and the dependency of wave attenuation at the ground surface on the vibration frequency of the moving load is discussed. 展开更多
关键词 Subway tunnel Moving train loadings Ground-borne vibration 2.5D finite element Gradually damped artificial boundary
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