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Fabrication of energetic semiconductor Bridge with high efficiency,accuracy and low cost by 3D direct writing
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作者 Yongqi Da Jiangtao Zhang +4 位作者 Fuwei Li Yuxuan Zhou Jianbing Xu Yinghua Ye Ruiqi Shen 《Defence Technology(防务技术)》 2025年第8期69-82,共14页
Enhancing the output capacity of semiconductor bridge(SCB) through the application of composite nano-energetic films is a subject of wide concern. Furthermore, improving the safety, reliability, and production efficie... Enhancing the output capacity of semiconductor bridge(SCB) through the application of composite nano-energetic films is a subject of wide concern. Furthermore, improving the safety, reliability, and production efficiency of energetic semiconductor bridge(ESCB) is the primary focus for large-scale engineering applications in the future. Here, the Al/CuO nano-film ESCB was efficiently fabricated using 3D direct writing. The electrostatic safety of the film is enhanced by precisely adjusting the particle size of Al, while ensuring that the SCB can initiate the film with small energy. The burst characteristics of SCB/ESCB were thoroughly investigated by employing a 100 μF tantalum capacitor to induce SCB and ESCB under an intense voltage gradient. The solid-state heating process of both SCB and ESCB was analyzed with multi physical simulation(MPS). The experimental results demonstrate that the critical burst time of both SCB and ESCB decreases with increasing voltage. Under the same voltage, the critical burst time of ESCB is longer than that of SCB, primarily due to differences in the melting to vaporization stage. The MPS results indicate that the highest temperature is observed at the V-shaped corner of SCB. Due to the thermal contact resistance between SCB and the film, heat conduction becomes more concentrated in the central region of the bridge, resulting in a faster solid-state heating process for ESCB compared to SCB.The results of the gap ignition experiments indicate that at a 19 mm gap, an ESCB with a film mass of 10 mg can ignite nickel hydrazine nitrate(NHN) and cyclotrimethylenetrinitramine(RDX). This suggests that thermite ESCB can serve as a novel, safe, and reliable energy exchange element and initiator in largescale engineering applications. 展开更多
关键词 Semiconductor bridge Al/CuO film Multi physical simulation(MPS) Electrostatic safety Gap ignition
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Effects of horizontal splitter plates on the vortex-induced vibration and aerostatic characteristics of twin separated parallel decks for a rail-cum-road bridge
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作者 HE Xu-hui YANG Jia-feng +2 位作者 LIU Lu-lu ZOU Yun-feng HE Jing 《Journal of Central South University》 2025年第3期1024-1043,共20页
Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated d... Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated due to aerodynamic interference between highway and railway decks. To study the effects of splitter plates, wind tunnel experiments for measuring VIV and aerostatic forces of twin decks under two opposite flow directions were conducted, while the surrounding flow and wind pressure of static twin decks with and without splitter plates are numerically simulated. The results showed that the incoming flow direction affects the VIV response and aerostatic coefficients. The highway deck has poor vertical and torsional VIV, and the VIV region and amplitude are different under different directions. While the railway deck only has vertical VIV when located upstream. The splitter plates can impede the process of vortex generation, shedding and impinging at the gap between twin deck, and significantly reducing the surface fluctuating pressure coefficient, thus effectively suppressing the VIV of twin decks. While, the splitter plates hurt the upstream deck regarding static wind stability and have little effect on the downstream deck. The splitter plates of appropriate width are recommended to improve VIV performances in twin parallel bridges. 展开更多
关键词 splitter plates vortex-induced vibration(VIV) aerostatic characteristic wind tunnel test twin parallel decks the rail-cum-road bridges computational fluid dynamics
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Elastoplastic bridge deck response spectra of high-speed railway simply-supported girder bridge with CRTS Ⅱ track system 被引量:1
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作者 LIU Bo-lun HE Chang +2 位作者 LAI Zhi-peng JIANG Li-zhong LI Dong-ping 《Journal of Central South University》 CSCD 2024年第11期4174-4186,共13页
The seismic damage to ancillary facilities on high-speed railway(HSR)bridges can affect the normal movement of trains.To propose the bridge deck acceleration response spectra of the typical HSR simply-supported girder... The seismic damage to ancillary facilities on high-speed railway(HSR)bridges can affect the normal movement of trains.To propose the bridge deck acceleration response spectra of the typical HSR simply-supported girder bridge for simplifying the seismic responses analysis of the facilities on bridges,the finite element models of the HSR multi-span simply-supported girder bridges with CRTSII track were established,and the numerical model was validated by tests.Besides,the effects of the span number,peak ground acceleration(PGA),pier height on the seismic acceleration and response spectra of the bridge deck were investigated.Afterward,the bridge acceleration amplification factor curves and bridge deck response spectra with different PGAs and pier heights were obtained.The formula for bridge deck acceleration amplification factor,with a 95%guarantee rate,was fitted.Moreover,the finite element models of the overhead contact lines(OCL)mounted on rigid base and bridges were established to validate the fitted formula.The results indicated that the maximum seismic acceleration response is in the midspan of the beam.The proposed formula for the bridge deck acceleration response spectra can be used to analyze the earthquake response of the OCL and other ancillary facilities on HSR simply-supported girder bridges.The bridge deck acceleration response spectra are conservative in terms of structural safety and can significantly improving the analysis efficiency. 展开更多
关键词 high-speed railway CRT SⅡtrack-bridge system bridge deck acceleration response spectra overhead contact line seismic amplification effect
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Influence of pier height on the safety of trains running on high-speed railway bridges during earthquakes
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作者 NIE Yu-tao GUO Wei +8 位作者 JIANG Li-zhong YU Zhi-wu ZENG Chen WANG Yang HE Xu-en REN Shao-xun HUANG Ren-qiang LIANG Guang-yue LI Chang-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2102-2115,共14页
Sudden earthquakes pose a threat to the running safety of trains on high-speed railway bridges,and the stiffness of piers is one of the factors affecting the dynamic response of train-track-bridge system.In this paper... Sudden earthquakes pose a threat to the running safety of trains on high-speed railway bridges,and the stiffness of piers is one of the factors affecting the dynamic response of train-track-bridge system.In this paper,a experiment of a train running on a high-speed railway bridge is performed based on a dynamic experiment system,and the corresponding numerical model is established.The reliability of the numerical model is verified by experiments.Then,the experiment and numerical data are analyzed to reveal the pier height effects on the running safety of trains on bridges.The results show that when the pier height changes,the frequency of the bridge below the 30 m pier height changes greater;the increase of pier height causes the transverse fundamental frequency of the bridge close to that of the train,and the shaking angle and lateral displacement of the train are the largest for bridge with 50 m pier,which increases the risk of derailment;with the pier height increases from 8 m to 50 m,the derailment coefficient obtained by numerical simulations increases by 75% on average,and the spectral intensity obtained by experiments increases by 120% on average,two indicators exhibit logarithmic variation. 展开更多
关键词 pier height high-speed railway bridge running safety numerical model
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Alkylene-functionality in bridged and fused nitrogen-rich poly-cyclic energetic materials:Synthesis,structural diversity and energetic properties
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作者 Man Xu Nanxi Xiang +2 位作者 Ping Yin Qi Lai Siping Pang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期18-46,共29页
From the standpoint of chemical structures,the organic backbones of energetic materials can be classified into aromatic rings,nonaromatic rings,and open chains.Although the category of aromatic energetic compounds exh... From the standpoint of chemical structures,the organic backbones of energetic materials can be classified into aromatic rings,nonaromatic rings,and open chains.Although the category of aromatic energetic compounds exhibits several advantages in the regulation of energetic properties,the nonaromatic heterocycles,assembling nitramino explosophores with simple alkyl bridges,still have prevailed in benchmark materials.The methylene bridge plays a pivotal role in the constructions of the classic nonaromatic heterocycle-based energetic compounds,e.g.,hexahydro-1,3,5-trinitro-1,3,5-triazine(RDX)and octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine(HMX),whereas ethylene bridge is the core moiety of state-of-the-art explosive 2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane(CL-20).In this context,it is of great interest to employ simple and practical bridges to assemble aromatic and nonaromatic nitrogen-rich heterocycles,thereby expanding the structural diversity of energetic materials,e.g.,bridged and fused nitrogen-rich poly-heterocycles.Furthermore,alkyl-bridged poly-heterocycles highlight the potential for the open chain type of energetic materials.In this review,the development of alkyl bridges in linking nitrogen-rich heterocycles is presented,and the perspective of the newly constructed energetic backbones is summarized for the future design of advanced energetic materials. 展开更多
关键词 Energetic materials Alkyl bridge strategy Nitrogen-rich azoles Fused heterocycles AZOLES
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Innovative approaches in high-speed railway bridge model simplification for enhanced computational efficiency
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作者 ZHOU Wang-bao XIONG Li-jun +1 位作者 JIANG Li-zhong ZHONG Bu-fan 《Journal of Central South University》 CSCD 2024年第11期4203-4217,共15页
In the realm of high-speed railway bridge engineering,managing the intricacies of the track-bridge system model(TBSM)during seismic events remains a formidable challenge.This study pioneers an innovative approach by p... In the realm of high-speed railway bridge engineering,managing the intricacies of the track-bridge system model(TBSM)during seismic events remains a formidable challenge.This study pioneers an innovative approach by presenting a simplified bridge model(SBM)optimized for both computational efficiency and precise representation,a seminal contribution to the engineering design landscape.Central to this innovation is a novel model-updating methodology that synergistically melds artificial neural networks with an augmented particle swarm optimization.The neural networks adeptly map update parameters to seismic responses,while enhancements to the particle swarm algorithm’s inertial and learning weights lead to superior SBM parameter updates.Verification via a 4-span high-speed railway bridge revealed that the optimized SBM and TBSM exhibit a highly consistent structural natural period and seismic response,with errors controlled within 7%.Additionally,the computational efficiency improved by over 100%.Leveraging the peak displacement and shear force residuals from the seismic TBSM and SBM as optimization objectives,SBM parameters are adeptly revised.Furthermore,the incorporation of elastoplastic springs at the beam ends of the simplified model effectively captures the additional mass,stiffness,and constraint effects exerted by the track system on the bridge structure. 展开更多
关键词 high-speed railway bridge engineering track-bridge system model simplified bridge model artificial neural networks particle swarm optimization seismic analysis
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Data-driven methods for predicting the representative temperature of bridge cable based on limited measured data
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作者 WANG Fen DAI Gong-lian +2 位作者 HE Chang-lin GE Hao RAO Hui-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期3168-3186,共19页
Cable-stayed bridges have been widely used in high-speed railway infrastructure.The accurate determination of cable’s representative temperatures is vital during the intricate processes of design,construction,and mai... Cable-stayed bridges have been widely used in high-speed railway infrastructure.The accurate determination of cable’s representative temperatures is vital during the intricate processes of design,construction,and maintenance of cable-stayed bridges.However,the representative temperatures of stayed cables are not specified in the existing design codes.To address this issue,this study investigates the distribution of the cable temperature and determinates its representative temperature.First,an experimental investigation,spanning over a period of one year,was carried out near the bridge site to obtain the temperature data.According to the statistical analysis of the measured data,it reveals that the temperature distribution is generally uniform along the cable cross-section without significant temperature gradient.Then,based on the limited data,the Monte Carlo,the gradient boosted regression trees(GBRT),and univariate linear regression(ULR)methods are employed to predict the cable’s representative temperature throughout the service life.These methods effectively overcome the limitations of insufficient monitoring data and accurately predict the representative temperature of the cables.However,each method has its own advantages and limitations in terms of applicability and accuracy.A comprehensive evaluation of the performance of these methods is conducted,and practical recommendations are provided for their application.The proposed methods and representative temperatures provide a good basis for the operation and maintenance of in-service long-span cable-stayed bridges. 展开更多
关键词 cable-stayed bridges representative temperature gradient boosted regression trees(GBRT)method field test limited measured data
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Identifying the enhancement mechanism of Al/MoO_(3) reactive multilayered films on the ignition ability of semiconductor bridge using a one-dimensional gas-solid two-phase flow model
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作者 Jianbing Xu Yuxuan Zhou +3 位作者 Yun Shen Yueting Wang Yinghua Ye Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期168-179,共12页
Energetic Semiconductor bridge(ESCB)based on reactive multilayered films(RMFs)has a promising application in the miniature and intelligence of initiator and pyrotechnics device.Understanding the ignition enhancement m... Energetic Semiconductor bridge(ESCB)based on reactive multilayered films(RMFs)has a promising application in the miniature and intelligence of initiator and pyrotechnics device.Understanding the ignition enhancement mechanism of RMFs on semiconductor bridge(SCB)during the ignition process is crucial for the engineering and practical application of advanced initiator and pyrotechnics devices.In this study,a one-dimensional(1D)gas-solid two-phase flow ignition model was established to study the ignition process of ESCB to charge particles based on the reactivity of Al/MoO_(3) RMFs.In order to fully consider the coupled exothermic between the RMFs and the SCB plasma during the ignition process,the heat release of chemical reaction in RMFs was used as an internal heat source in this model.It is found that the exothermal reaction in RMFs improved the ignition performance of SCB.In the process of plasma rapid condensation with heat release,the product of RMFs enhanced the heat transfer process between the gas phase and the solid charge particle,which accelerated the expansion of hot plasma,and heated the solid charge particle as well as gas phase region with low temperature.In addition,it made up for pressure loss in the gas phase.During the plasma dissipation process,the exothermal chemical reaction in RMFs acted as the main heating source to heat the charge particle,making the surface temperature of the charge particle,gas pressure,and gas temperature rise continuously.This result may yield significant advantages in providing a universal ignition model for miniaturized ignition devices. 展开更多
关键词 Ignition enhancement mechanism 1D gas-solid two-phase flow Al/MoO_(3)reactive multilayered films Semiconductor bridge Miniaturized ignition device
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BIM技术赋能在役桥梁安全与高效运维 被引量:2
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作者 张丽萍 王广 +2 位作者 王力 陈云峰 李子奇 《中国安全生产科学技术》 北大核心 2025年第1期101-108,共8页
为了保证运维阶段桥梁结构安全,提升桥梁运维工作的效率,开展公路混凝土梁式桥运维阶段建筑信息模型(building information modeling,BIM)技术应用研究。在对公路桥梁现行编码体系进行扩展的基础上,提出1种参数化快速建模方法,以快速完... 为了保证运维阶段桥梁结构安全,提升桥梁运维工作的效率,开展公路混凝土梁式桥运维阶段建筑信息模型(building information modeling,BIM)技术应用研究。在对公路桥梁现行编码体系进行扩展的基础上,提出1种参数化快速建模方法,以快速完成桥梁构件族的创建与整体模型的集成。借助Autodesk Revit软件应用程序编程接口(application programming interface,API),采用C#语言,开发公路混凝土梁式桥智慧运维状态评估系统,以实际工程应用进行验证分析。研究结果表明:全面统一的桥梁信息编码体系,能够提高桥梁信息统计与检索效率;提出的快速建模方法能够显著减少建模工作量,建模时间较传统建模方法可减少60%,并保证模型的准确性与规范性;运维状态评估系统能够实现养护数据的充分利用与桥梁评定工作的自动化,通过对桥梁运维信息的有效组织,实现服役性能的长期追踪,从而确保运营期桥梁结构状态安全稳定。研究结果可为公路混凝土梁式桥运维管理提供技术支撑,提升桥梁运维的数字化水平。 展开更多
关键词 桥梁工程 运维状态评估系统 Building Information Modeling 公路混凝土梁式桥
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侧风下大跨拱桥变形对高速列车行车平稳性的影响机理 被引量:1
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作者 李小珍 周彦希 王铭 《西南交通大学学报》 北大核心 2025年第1期1-9,共9页
为探求侧风下的拱桥变形对列车平稳性的作用机理,通过风-车-桥耦合系统得到跨中横、竖向位移,分析不同风速、车速下的列车行车平稳性,量化桥梁变形对风-车-桥系统中列车横、竖向加速度的贡献;结合车体加速度响应的敏感波长及桥梁变形的... 为探求侧风下的拱桥变形对列车平稳性的作用机理,通过风-车-桥耦合系统得到跨中横、竖向位移,分析不同风速、车速下的列车行车平稳性,量化桥梁变形对风-车-桥系统中列车横、竖向加速度的贡献;结合车体加速度响应的敏感波长及桥梁变形的时频特性,分析桥梁变形对行车平稳性影响机理.结果表明:桥梁竖向位移差异较横向位移差异较小,且主要位移由车致桥梁变形产生,最大幅值达到了-9.2mm;在列车及风荷载作用下,桥梁横向及竖向位移较为显著,但其对列车平稳性的影响主要体现在交界墩位置处,约为其余位置响应的4倍;除交界墩区域,桥上列车的行车平稳性主要由风致列车振动及轨道不平顺决定;车体横向及竖向加速度功率谱密度分布与轨道不平顺的波长密切相关,其对应的敏感波长区间均小于120m;车体横向及竖向加速度主要受车辆荷载作用引起的桥梁变形影响,而风荷载引起的桥梁变形主要分布于主跨范围内,波长大于120m,因而未对列车车体加速度产生显著影响. 展开更多
关键词 高速列车 行车平稳性 桥梁变形 风荷载 风-车-桥系统
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落石撞击钢筋混凝土箱梁数值仿真与损伤分析 被引量:1
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作者 祝露 林立华 +1 位作者 方海 韩娟 《南京工业大学学报(自然科学版)》 北大核心 2025年第1期91-98,共8页
为研究落石撞击对钢筋混凝土箱梁的影响,通过ANSYS/LS-DYNA有限元软件对落石撞击某匝道桥箱梁的过程进行数值模拟,计算竖直方向的落石撞击力,分析桥面破损情况和箱梁开裂形态,并与现场检测结果进行对比。结果表明:落石与箱梁发生了5次撞... 为研究落石撞击对钢筋混凝土箱梁的影响,通过ANSYS/LS-DYNA有限元软件对落石撞击某匝道桥箱梁的过程进行数值模拟,计算竖直方向的落石撞击力,分析桥面破损情况和箱梁开裂形态,并与现场检测结果进行对比。结果表明:落石与箱梁发生了5次撞击,产生了多个撞击力峰值,桥面出现5处凹坑;落石撞击力类似三角形脉冲荷载,瞬时峰值大,持续时间短;首次撞击时落石撞击力最大,瞬时峰值达到10705 kN,基于瑞士公式和日本道路公团公式计算的最大落石撞击力比模拟值小,将其直接用于落石-箱梁碰撞计算是偏不安全的;有限元计算得到的桥面凹坑分布和箱梁开裂破损情况与事故测量结果吻合较好,再现了落石撞击钢筋混凝土箱梁的过程;落石撞击箱梁所造成病害主要是碰撞接触区域的局部损伤,首次撞击时病害最严重,桥面破损范围大,箱梁翼缘板上表面混凝土开裂并向下延伸至翼缘与腹板交界处。 展开更多
关键词 钢筋混凝土箱梁 落石 撞击力 桥面损伤 数值模拟 桥面凹坑
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开口T形加劲肋正交异性钢桥面板疲劳性能研究 被引量:2
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作者 姜磊 元敏 +2 位作者 邹博文 刘永健 杨万鹏 《东南大学学报(自然科学版)》 北大核心 2025年第1期78-88,共11页
为了分析并对比采用开口T形加劲肋形式正交异性钢桥面板的疲劳性能,采用Midas Civil建立全桥模型,提出横隔板顶部不开孔的开口T肋正交异性钢桥面板、横隔板顶部开孔的开口T肋正交异性钢桥面板、闭口U肋共3种设计方案,采用Abaqus分别建... 为了分析并对比采用开口T形加劲肋形式正交异性钢桥面板的疲劳性能,采用Midas Civil建立全桥模型,提出横隔板顶部不开孔的开口T肋正交异性钢桥面板、横隔板顶部开孔的开口T肋正交异性钢桥面板、闭口U肋共3种设计方案,采用Abaqus分别建立局部三维实体模型,对3种设计方案展开参数分析,并采用热点应力法进行疲劳性能评估。结果表明,全桥疲劳易损断面位置处于跨中顶板厚度为18 mm的E类梁段。方案3在各个疲劳构造细节处的热点应力幅均高于方案1和方案2。方案1仅在疲劳构造细节⑤处的热点应力幅小于方案2,其余几个疲劳构造细节的应力幅均高于方案2,在疲劳构造细节①处的热点应力幅降幅最大,约为34.75%,在疲劳构造细节③的热点应力幅降幅最小,仅为7.16%。无论顶板厚度变化还是横隔板厚度变化,变化幅度最大的位置均是疲劳构造细节①和②,其余位置疲劳应力幅对于顶板厚度变化较横隔板厚度变化敏感。方案2并无超出热点应力S‑N曲线疲劳截止限的位置,而方案1和方案3超出疲劳截止限的位置疲劳性能均满足规范中对正交异性钢桥面板疲劳性能验算的要求。 展开更多
关键词 桥梁工程 正交异性钢桥面板 开口T肋 疲劳构造细节 热点应力法 疲劳性能评估
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斜拉桥钢桥面板挖孔细节群的数字畸变疲劳试验 被引量:2
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作者 王春生 许璐巍 李璞玉 《东南大学学报(自然科学版)》 北大核心 2025年第1期66-77,共12页
为研究斜拉桥钢桥面板横隔板挖孔细节群的畸变疲劳机理,考虑疲劳应力、焊接残余应力、焊接缺陷等多场耦合作用,建立了斜拉桥全桥足尺数字疲劳孪生模型,实现了钢桥面板典型细节群的数字畸变疲劳试验与模拟。焊接数字孪生模拟时,采用与单... 为研究斜拉桥钢桥面板横隔板挖孔细节群的畸变疲劳机理,考虑疲劳应力、焊接残余应力、焊接缺陷等多场耦合作用,建立了斜拉桥全桥足尺数字疲劳孪生模型,实现了钢桥面板典型细节群的数字畸变疲劳试验与模拟。焊接数字孪生模拟时,采用与单元温度相关联的热对流参数表达,可显著改善焊接温度场和残余应力场模拟准确度。数字畸变疲劳试验与模拟结果表明,横隔板挖孔细节群的畸变疲劳裂纹尖端等效应力强度因子幅均大于门槛值,该细节群初始裂纹在运营卡车荷载作用下易于扩展。应变能释放率分析结果表明,横隔板挖孔细节群的畸变疲劳裂纹均是以Ⅰ型裂纹为主导的Ⅰ-Ⅱ-Ⅲ型复合型裂纹,扩展全过程3种类型裂纹耦合特征显著。该研究成果可为斜拉桥钢桥面板抗疲劳设计与维护提供依据。 展开更多
关键词 桥梁工程 斜拉桥 钢桥面板 畸变疲劳 数字疲劳试验 复合型裂纹 累积应变能释放率
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基于Dynamo的Revit-Midas/Civil斜拉桥模型信息转换 被引量:2
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作者 蔡金标 刘鸾翔 +2 位作者 冯倩 何欣 徐荣桥 《湖南大学学报(自然科学版)》 北大核心 2025年第1期132-138,共7页
BIM模型不支持有限元计算,且BIM模型与有限元分析模型数据交互困难,故BIM技术正向设计过程中存在建模效率低、模型修改困难等问题,无法做到BIM结构设计与有限元力学分析一体化,增加了结构模型建模与纠错成本.本文依托Revit和Midas/Civi... BIM模型不支持有限元计算,且BIM模型与有限元分析模型数据交互困难,故BIM技术正向设计过程中存在建模效率低、模型修改困难等问题,无法做到BIM结构设计与有限元力学分析一体化,增加了结构模型建模与纠错成本.本文依托Revit和Midas/Civil软件平台,在Dynamo环境下采用IronPython语言设计了一套Revit-Midas/Civil的模型信息转换程序.以博士大桥主桥为对象,通过程序自动实现:1)Revit模型桥梁构件分解、截面特性计算、拉索及梁塔弹性连接处理,并转换成适用于Midas/Civil的语言格式MCT文件,实现了Revit向Midas/Civil模型信息自动转换;2)将有限元计算结果反馈到Revit模型中,对作用效应信息按数值大小赋予渐变颜色,实现了在BIM模型中显示有限元分析结果的展示功能.本文程序可实现Revit-Midas/Civil模型信息转换,有效提高了BIM正向应用效率,弥补了BIM技术在桥梁结构分析方面的不足. 展开更多
关键词 斜拉桥 模型转换 Dynamo混合编程 REVIT MIDAS/CIVIL
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珠肇高铁西江特大桥主桥总体设计 被引量:2
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作者 王斌 《世界桥梁》 北大核心 2025年第1期15-21,共7页
珠肇高铁西江特大桥主桥为(70+148+2×435+148+70)m三塔斜拉桥,采用中塔设置固定支座、边塔设置纵向活动支座的支座体系,在中、边塔处均设置纵向液压阻尼器,辅助墩、边墩处设置E型钢阻尼器,并设置2对中塔加强索以提高桥梁刚度。主... 珠肇高铁西江特大桥主桥为(70+148+2×435+148+70)m三塔斜拉桥,采用中塔设置固定支座、边塔设置纵向活动支座的支座体系,在中、边塔处均设置纵向液压阻尼器,辅助墩、边墩处设置E型钢阻尼器,并设置2对中塔加强索以提高桥梁刚度。主梁采用钢-混组合梁,钢结构采用槽形截面,桥面板采用混凝土板,负弯矩较大的主梁区段采用顶、底板双组合截面以改善主梁应力状态。辅助墩两侧共58 m范围内钢结构与混凝土桥面板采用缓粘结剪力钉连接,桥面板采用超高性能混凝土(UHPC)+钢筋混凝土(RC)组合结构,以提高桥面板抗裂性能。采用H形桥塔,由上、中、下塔柱和上、下横梁组成,桥面以上塔高与主跨跨径比值为1/3.69,桥塔及桥墩均采用钻孔灌注桩基础;斜拉索采用双索面扇形布置,全桥设置102对平行钢丝拉索以及2对中塔加强索。该桥结构验算结果表明:桥梁具有合理的刚度、良好的轨道平顺性、气动稳定性及抗风性能,能够满足高速列车运行要求。 展开更多
关键词 铁路桥 三塔斜拉桥 钢-混凝土组合梁 中塔加强索 缓粘结剪力钉 UHPC+RC组合桥面板 桥梁设计
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考虑车流荷载的大跨梁桥行车舒适性分析 被引量:1
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作者 冯东明 王保全 +2 位作者 夏烨 黎剑安 刘朵 《东南大学学报(自然科学版)》 北大核心 2025年第2期468-476,共9页
为探讨车流荷载对车辆通过大跨梁桥时乘员舒适性的影响,综合考虑了不同类型的车辆模型,基于车桥耦合振动理论计算了车辆座椅位置的响应。采用国际标准ISO‐2631规定的1/3倍频程分析法研究了不同荷载工况下的行车舒适性,并对主要影响因... 为探讨车流荷载对车辆通过大跨梁桥时乘员舒适性的影响,综合考虑了不同类型的车辆模型,基于车桥耦合振动理论计算了车辆座椅位置的响应。采用国际标准ISO‐2631规定的1/3倍频程分析法研究了不同荷载工况下的行车舒适性,并对主要影响因素开展了参数敏感性分析。此外,结合桥梁实际监测的车流数据,基于ISO‐2631中的计权加速度均方根值法,从样本角度对行车舒适性进行了统计分析。研究结果表明:不同车辆荷载工况对大跨梁桥的响应具有显著影响,但在考虑路面平整度因素后,车辆响应变化较小,进而导致行车舒适性差异不明显;车速降低和车重增加虽能在一定程度上改善行车舒适性,但其作用相对较小;路面平整度是影响大跨梁桥行车舒适性的关键因素,路面状况恶化会引发更加剧烈的车桥耦合振动,进而显著降低舒适性。 展开更多
关键词 行车舒适性 车桥耦合 大跨梁式桥 车流荷载 功率谱密度 加速度均方根值
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硫氧协同效应增强生物炭修复矿区铅污染土壤 被引量:1
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作者 赵莹莹 顾高源 《化学研究与应用》 北大核心 2025年第3期599-605,共7页
采矿工业产生的铅锌伴生矿,所含的具有强神经和血液毒性的铅离子易通过渗滤液的形式进入周边农田中,进而威胁其生产力与食品安全。生物炭因含有丰富的含氧官能团,成为土壤重金属的热门修复剂。然而,具有硬碱性质的含氧官能团难以与具有... 采矿工业产生的铅锌伴生矿,所含的具有强神经和血液毒性的铅离子易通过渗滤液的形式进入周边农田中,进而威胁其生产力与食品安全。生物炭因含有丰富的含氧官能团,成为土壤重金属的热门修复剂。然而,具有硬碱性质的含氧官能团难以与具有交界酸性质的铅离子形成稳定的结合态,这为铅污染土壤的有效治理带来了挑战。本研究中,采用浸渍-热解法合成的Mn-S功能化咖啡渣生物炭(MSF)被一系列表征与DFT计算证实了可以通过硫离子(S^(2-))对半占据态费米子的消除效应提高吸附体系的稳定性。另一方面,巯基的参与使羟基吸附态铅离子的能隙(HOMO-LUMO gap)由1.33 eV提高到1.38 eV,这表明巯基、羟基与铅离子将通过协同效应构成具有更高稳定性的三元体系。此外,分子动力学(MD)模拟结果揭示了MSF对溶液中Pb(Ⅱ)的外扩散和表面扩散的促进作用,证实了MSF与土壤含水率在铅离子钝化中的协同作用。土壤模拟实验中,MSF驱使90.22%的铅离子转化为具有低环境风险的钝化态。在矿区污染农田中施加MSF 120天后,所种植的牛皮菜株高、鲜重和根长分别提高2.03,9.53和5.59倍,体现出其对Pb胁迫优异的缓解性能。综上所述,MSF不仅体现出优秀的矿区农田修复能力,离子硫和巯基硫对铅离子和羟基之间结合的调制作用可为铅离子高效钝化提供新的方案与策略。 展开更多
关键词 生物炭 铅污染 土壤修复 桥联效应
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采动影响下坚硬岩桥型断层活化与储能演变规律 被引量:1
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作者 吕进国 韩文鹤 +3 位作者 张学朋 彭意胜 潘一山 代连朋 《煤炭学报》 北大核心 2025年第2期902-916,共15页
断层阻滑结构的存在会改变断层能量积聚与滑移行为规律,导致断层活化失稳机理与以往存在较大差异。为研究采动影响下坚硬岩桥型断层活化及储能的演化规律,理论分析了含坚硬岩桥型阻滑结构的断层活化条件;采用物理模拟试验方法,研究了开... 断层阻滑结构的存在会改变断层能量积聚与滑移行为规律,导致断层活化失稳机理与以往存在较大差异。为研究采动影响下坚硬岩桥型断层活化及储能的演化规律,理论分析了含坚硬岩桥型阻滑结构的断层活化条件;采用物理模拟试验方法,研究了开采扰动下含坚硬岩桥断层的滑移规律,分析了含坚硬岩桥与无阻滑结构的断层活化差异特征,研究了工作面回采过程中含坚硬岩桥与无阻滑结构的断层带正、剪应力变化特征;采用数值模拟方法,研究了临近断层开采过程中含坚硬岩桥与无阻滑结构的断层带应力分布与能量积聚规律。研究结果表明:开采扰动下含坚硬岩桥的断层呈现了更强的非均匀性滑移,但断层的滑移量明显减小,活化程度降低,坚硬岩桥可增加断层的稳定性,其稳定性的提高主要体现在断层面黏聚力的增加;靠近工作面的坚硬岩桥应力集中程度最高,最易发生剪切破坏,但在一定程度上坚硬岩桥会分散应力集中带;对于无阻滑的断层带,其弹性应变能密度随靠近断层开采而逐步增高,但增加幅度有限,且弹性应变能密度峰值始终呈现在工作面前方区域;而坚硬岩桥的存在改变了断层带能量的分布规律,其应变能密度峰值主要聚集在坚硬岩桥与断层带接触处位置。越靠近岩桥的断层带,其滑移挤压程度越高,能量积聚程度也越高;含坚硬岩桥的断层能量积聚程度远大于无阻滑结构断层,阻滑结构可大幅度提升断层带储能潜力。 展开更多
关键词 阻滑结构 坚硬岩桥 应变能 断层活化 失稳破坏
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无砟轨道铁路简支+刚构布置梁桥抗震设计
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作者 刘尊稳 李欣婧 +3 位作者 陈兴冲 韩国庆 韩峰 李媛 《铁道工程学报》 北大核心 2025年第5期43-49,共7页
研究目的:我国西部地区高速铁路桥梁设计较多采用双块式无砟轨道简支+刚构布置梁桥,针对该类桥梁结构的抗震设计问题,分别建立传统计算模型、考虑轨道系统约束和同时考虑钢轨约束的线桥一体化模型共三种模型,同时针对不同沟谷区域调整... 研究目的:我国西部地区高速铁路桥梁设计较多采用双块式无砟轨道简支+刚构布置梁桥,针对该类桥梁结构的抗震设计问题,分别建立传统计算模型、考虑轨道系统约束和同时考虑钢轨约束的线桥一体化模型共三种模型,同时针对不同沟谷区域调整刚构桥联数和墩高,运用反应谱法研究各结构体系的地震响应规律。研究结论:(1)轨道系统及两端钢轨的约束作用均减小了引桥桥墩的地震响应,但主桥上轨道系统的存在会增大刚构边墩的墩底弯矩,钢轨的约束作用影响则较小;(2)在线桥一体化模型中,随着刚构桥联数的增加,刚构墩的耗能能力会加强,但随着墩高增加,主要耗能构件会转为刚构边墩;(3)轨道系统的存在能抑制全桥的墩顶位移,但随着刚构桥联数的增加,抑制作用会减弱;(4)主跨刚构为一联、三联时,轨道应力分别呈“V”“U”字形分布,应力峰值位于刚构边墩梁缝处,建议在该处进行特殊设计以应对应力集中;(5)本研究成果可为我国西部地区高铁桥梁的抗震设计提供一定的科学依据。 展开更多
关键词 西部地区高速铁路桥梁 双块式无砟轨道 简支+刚构布置梁桥 线桥一体化模型 抗震设计
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德国高速铁路整体式桥梁工程应用与设计原则
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作者 刘钊 王羿 高宗余 《世界桥梁》 北大核心 2025年第4期1-7,共7页
整体式桥梁通过采用“梁-墩-基础”整体连接构造,从而取消或减少伸缩缝与支座用量,增加结构竖向刚度,适应温度纵向变形,达到提升行车平顺性、节省工程量、降低后期维护成本的目的。采用一体化长联设计的整体式高速铁路桥梁具有一定的经... 整体式桥梁通过采用“梁-墩-基础”整体连接构造,从而取消或减少伸缩缝与支座用量,增加结构竖向刚度,适应温度纵向变形,达到提升行车平顺性、节省工程量、降低后期维护成本的目的。采用一体化长联设计的整体式高速铁路桥梁具有一定的经济与技术优势。在2017年建成的德国“埃尔福特—莱比锡/哈勒”高铁线路中,有4座非常有特色的整体式桥梁,分别是谢尔孔德桥、盖恩斯巴赫桥、温斯特鲁特桥和斯特布尼茨桥。首先从跨径布置、主梁截面、制动墩与柔性墩布置等方面介绍了各桥的桥梁概况,并通过其与同桥位的非整体式桥梁方案进行对比,阐述其设计的合理性;其次逐一分析了各桥在结构体系、模块单元划分、制动墩与柔性墩设计、关键施工工艺等方面的技术要点;然后从制动墩、柔性墩、模块单元交界墩、主梁截面等关键构造,阐述了4座整体式高铁桥梁的结构设计特点;最后总结了整体式高铁桥梁的一般设计原则。 展开更多
关键词 高速铁路桥梁 整体式桥梁 结构体系 模块单元划分 制动墩 柔性墩 桥梁设计
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