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Performance-based seismic assessment of skewed bridges with and without considering soil-foundation interaction effects for various site classes 被引量:5
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作者 Abdoul R.Ghotbi 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第3期357-373,共17页
The seismic behavior of skewed bridges has not been well studied compared to straight bridges. Skewed bridges have shown extensive damage, especially due to deck rotation, shear keys failure, abutment unseating and co... The seismic behavior of skewed bridges has not been well studied compared to straight bridges. Skewed bridges have shown extensive damage, especially due to deck rotation, shear keys failure, abutment unseating and column- bent drift. This research, therefore, aims to study the behavior of skewed and straight highway overpass bridges both with and without taking into account the effects of Soil-Structure Interaction (SSI) due to near-fault ground motions. Due to several sources of uncertainty associated with the ground motions, soil and structure, a probabilistic approach is needed. Thus, a probabilistic methodology similar to the one developed by the Pacific Earthquake Engineering Research Center (PEER) has been utilized to assess the probability of damage due to various levels of shaking using appropriate intensity measures with minimum dispersions. The probabilistic analyses were performed for various bridge configurations and site conditions, including sand ranging from loose to dense and clay ranging from soft to stiff, in order to evaluate the effects. The results proved a considerable susceptibility of skewed bridges to deck rotation and shear keys displacement. It was also found that SSI had a decreasing effect on the damage probability for various demands compared to the fixed-base model without including SSI. However, deck rotation for all types of the soil and also abutment unseating for very loose sand and soft clay showed an increase in damage probability compared to the fixed-base model. The damage probability for various demands has also been found to decrease with an increase of soil strength for both sandy and clayey sites. With respect to the variations in the skew angle, an increase in skew angle has had an increasing effect on the amplitude of the seismic response for various demands. Deck rotation has been very sensitive to the increase in the skew angle; therefore, as the skew angle increased, the deck rotation responded accordingly. Furthermore, abutment unseating showed an increasing trend due to an increase in skew angle for both fixed-base and SSI models. 展开更多
关键词 skewed bridges SSI demand model probabilistic assessment damage probability
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Seismic response of skewed RC box-girder bridges 被引量:4
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作者 Ahmed Abdel-Mohti Gokhan Pekcan 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2008年第4期415-426,共12页
It is critical to ensure the functionality of highway bridges after earthquakes to provide access to important facilities. Since the 1971 San Fernando earthquake, there has been a better understanding of the seismic p... It is critical to ensure the functionality of highway bridges after earthquakes to provide access to important facilities. Since the 1971 San Fernando earthquake, there has been a better understanding of the seismic performance of bridges. Nonetheless, there are no detailed guidelines addressing the performance of skewed highway bridges. Several parameters affect the response of skewed highway bridges under both service and seismic loads which makes their behavior complex. Therefore, there is a need for more research to study the effect of skew angle and other related factors on the performance of highway bridges. This paper examines the seismic performance of a three-span continuous concrete box girder bridge with skew angles from 0 to 60 degrees, analytically. Finite element (FE) and simplified beam-stick (BS) models of the bridge were developed using SAP2000. Different types of analysis were considered on both models such as: nonlinear static pushover, and linear and nonlinear time history analyses. A comparison was conducted between FE and BS, different skew angles, abutment support conditions, and time history and pushover analysis. It is shown that the BS model has the capability to capture the coupling due to skew and the significant modes for moderate skew angles. Boundary conditions and pushover load profile are determined to have a major effect on pushover analysis. Pushover analysis may be used to predict the maximum deformation and hinge formation adequately. 展开更多
关键词 skew bridge seismic response pushover analysis time history analysis MODELING
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The effect of different intensity measures and earthquake directions on the seismic assessment of skewed highway bridges 被引量:3
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作者 M.Bayat F.Daneshjoo N.Nistico 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第1期165-179,共15页
In this study the probable seismic behavior of skewed bridges with continuous decks under earthquake excitations from different directions is investigated. A 45° skewed bridge is studied. A suite of 20 records is... In this study the probable seismic behavior of skewed bridges with continuous decks under earthquake excitations from different directions is investigated. A 45° skewed bridge is studied. A suite of 20 records is used to perform an Incremental Dynamic Analysis (IDA) for fragility curves. Four different earthquake directions have been considered: -45°, 0°, 22.5, 45°. A sensitivity analysis on different spectral intensity measures is presented; efficiency and practicality of different intensity measures have been studied. The fragility curves obtained indicate that the critical direction for skewed bridges is the skew direction as well as the longitudinal direction. The study shows the importance of finding the most critical earthquake in understanding and predicting the behavior of skewed bridges. 展开更多
关键词 skewed highway bridge earthquake direction spectral intensity measure analytical fragility curve
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A New Method on Resolving the Rotation in the Plane of Skew Bridges 被引量:1
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作者 KANG Jun-tao ZHENG Jun-jie WANG Guo-ding FANG Qin-han DING Rui 《Wuhan University Journal of Natural Sciences》 EI CAS 2005年第6期1081-1084,共4页
The rotation of skew bridges in the plane is a common phenomenon in engineering. Traditional measure is to setup pins or limiting displacement with lateral bearings, but the result is not satisfactory. In order to sol... The rotation of skew bridges in the plane is a common phenomenon in engineering. Traditional measure is to setup pins or limiting displacement with lateral bearings, but the result is not satisfactory. In order to solve this problem, the reason for the rotation in the plane is found by philosophy analysis and an idea regarding the application of slantleg frame skew bridges without abutment is brought forward in this paper. Theory and engineering practices indicate that slant-leg rigid frame bridges without abutment can restrain the rotation of skew bridges in the plane to the utmost extent because of its structural characteristics and can fundamentally solve the tough defect of skew bridges. 展开更多
关键词 slant-leg rigid frame bridges without abutment skew bridge rotation in the plane
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Prediction of Skewed Bridge Behaviors with Arbitrary Boundary Conditions—— Theoretical Approach and Its Design Application
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作者 Pang-jo Chun Gongkang Fu 《Journal of Civil Engineering and Architecture》 2012年第6期639-650,共12页
关键词 设计规范 任意边界条件 预测 应用 斜交桥 行为 公路桥梁 AASHTO
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Free Vibration Analysis of RC Box-Girder Bridges Using FEM
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作者 Preeti Agarwal Priyaranjan Pal Pradeep Kumar Mehta 《Sound & Vibration》 EI 2022年第2期105-125,共21页
The free vibration analysis of simply supported box-girder bridges is carried out using the finite element method.The fundamental frequency is determined in straight,skew,curved and skew-curved box-girder bridges.It i... The free vibration analysis of simply supported box-girder bridges is carried out using the finite element method.The fundamental frequency is determined in straight,skew,curved and skew-curved box-girder bridges.It is important to analyse the combined effect of skewness and curvature because skew-curved box-girder bridge behaviour cannot be predicted by simply adding the individual effects of skewness and curvature.At first,an existing model is considered to validate the present approach.A convergence study is carried out to decide the mesh size in the finite element method.An exhaustive parametric study is conducted to determine the fundamental frequency of box-girder bridges with varying skew angle,curve angle,span,span-depth ratio and cell number.The skew angle is varied from 0°to 60°,curve angle is varied from 0°to 60°,span is changed from 25 to 50 m,span-depth ratio is varied from 10 to 16,and single cell&double cell are used in the present study.A total of 420 bridge models are used for parametric study in the investigation.Mode shapes of the skew-curved bridge are also presented.The fundamental frequency of the skew-curved box-girder bridge is found to be more than the straight bridge,so,the skew-curved box-girder bridge is preferable.The present study may be useful in the design of box-girder bridges. 展开更多
关键词 Fundamental frequency skew-curved box-girder bridge SINGLE-CELL double-cell curve angle skew angle FEM
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河道斜交桥梁壅水及流场特性分析
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作者 石喜 谭春彬 +1 位作者 贡力 陶虎 《泥沙研究》 CAS CSCD 北大核心 2024年第2期64-71,共8页
圆端桥墩是平原河道内一种常见的桥墩型式,为探究斜交圆端桥墩不同布置方式引起的壅水特性和水流流态变化,建立三维数值模型,采用SIMPLE算法耦合k-ε紊流模型求解N-S方程组,应用VOF法追踪自由液面,分析了单个桥墩壅水特性、绕流流场和... 圆端桥墩是平原河道内一种常见的桥墩型式,为探究斜交圆端桥墩不同布置方式引起的壅水特性和水流流态变化,建立三维数值模型,采用SIMPLE算法耦合k-ε紊流模型求解N-S方程组,应用VOF法追踪自由液面,分析了单个桥墩壅水特性、绕流流场和升阻力系数随斜交角度变化的规律。研究结果表明:下游墩前壅水高度最大,壅水长度最长,上游墩前冲高值最大;水流绕流经过上游桥墩后偏向下游桥墩侧,桥墩垂直桥轴线布置方式绕流形成的壅水叠加效应更明显;斜交桥梁布置采取圆端桥墩时,桥墩顺水流布置,可有效减小阻水宽度与壅水高度,弱化流场结构变化。 展开更多
关键词 斜交桥 数值模拟 圆端桥墩 布置方式 壅水 流场
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小角度斜交上跨铁路异型T构桥受力分析研究
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作者 吴炜 《铁路工程技术与经济》 2024年第1期5-9,共5页
随着铁路大规模的建设,线路间的小角度斜交交叉穿越不可避免。当桥下净空受限时,常用的门式刚构方案存在不适用性。本文结合西十高铁西安东站动走线上跨西十正线工程,将门式墩与小T构梁结合,采用空间异型框架T构梁桥满足净空受限情况下... 随着铁路大规模的建设,线路间的小角度斜交交叉穿越不可避免。当桥下净空受限时,常用的门式刚构方案存在不适用性。本文结合西十高铁西安东站动走线上跨西十正线工程,将门式墩与小T构梁结合,采用空间异型框架T构梁桥满足净空受限情况下的线路间小角度斜交跨越。建立了全桥三维整体模型、纵向计算模型、横梁局部模型等有限元模型,通过不同模型间的比较,分析了异型框架T构梁桥的纵、横向受力计算方法,对纵向模型、局部横梁模型的适用性进行了论证,并对常用的局部横梁模型进行刚度修正,提出了修正刚度后的局部横梁模型。修正后的横梁局部模型受力明确,计算结果与三维空间模型一致,可满足设计计算要求。 展开更多
关键词 桥梁工程 小角度斜交 异型框架T构梁 纵向计算 横梁计算模型
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装配式斜转正桥梁结构受力分析
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作者 朱爱东 《工程技术研究》 2024年第1期18-20,共3页
受桥下道路条件及经济因素影响,斜转正桥梁的应用越来越广泛。斜转正桥梁同一跨各片梁的长度差异较大,通常受到弯扭耦合作用,受力情况比正交桥梁复杂得多,进行桥梁设计时需要分析每片梁的受力情况。文章以广东某高速公路项目为背景,针... 受桥下道路条件及经济因素影响,斜转正桥梁的应用越来越广泛。斜转正桥梁同一跨各片梁的长度差异较大,通常受到弯扭耦合作用,受力情况比正交桥梁复杂得多,进行桥梁设计时需要分析每片梁的受力情况。文章以广东某高速公路项目为背景,针对高速公路装配式斜转正桥梁建立梁格模型进行受力分析,进而指导斜转正桥梁设计,通过实际项目案例验证装配式斜转正桥梁在高速公路建设中的可行性,旨在为今后类似项目提供参考。 展开更多
关键词 斜转正桥梁 梁格法 有限元分析
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斜交铁路荷载对框架桥应力的影响性分析
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作者 谭凌飞 《铁道勘测与设计》 2024年第2期63-66,共4页
以某跨度为9.0m的框架桥为实际工程背景,采用MIDAS FEA NX建立三维实体有限元模型,对框架受列车单双线荷载、列车荷载中线与框架纵向中线的斜交角度(分别考虑0°、10°、20°、30°、45°,共5种情况)等力学性能影... 以某跨度为9.0m的框架桥为实际工程背景,采用MIDAS FEA NX建立三维实体有限元模型,对框架受列车单双线荷载、列车荷载中线与框架纵向中线的斜交角度(分别考虑0°、10°、20°、30°、45°,共5种情况)等力学性能影响因素进行数值分析,对比各个工况下的应力结果,从而确定框架最不利荷载情况。研究结果表明:当斜交角度相同时,双线列车荷载对框架顶板和竖墙产生的拉应力和压应力更大;当列车荷载中线与框架纵向中线的斜交角度由0°增至45°,角度等于20°时,框架顶板和竖墙的拉应力和压应力最大。 展开更多
关键词 框架桥 实体有限元分析 斜交角度
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基于模态测试的斜交简支梁桥建造质量快速评估
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作者 梁金平 杨洪超 亓兴军 《特种结构》 2024年第2期58-64,共7页
以实际工程中的一座新建公路斜交宽简支梁桥为例,探究模态测试技术和模态刚度测试方法在新建桥梁工程验收评价中的应用。设计虚拟静载试验方案,选取参与计算的最少模态阶数;进行环境激励桥梁模态测试试验,识别桥梁前三阶实测模态参数,... 以实际工程中的一座新建公路斜交宽简支梁桥为例,探究模态测试技术和模态刚度测试方法在新建桥梁工程验收评价中的应用。设计虚拟静载试验方案,选取参与计算的最少模态阶数;进行环境激励桥梁模态测试试验,识别桥梁前三阶实测模态参数,基于实测模态参数识别结构柔度矩阵,预测虚拟静载试验的实测模态挠度,对比桥梁的设计理论挠度,结合相关规范评估建造状况。结果表明:虚拟静载试验荷载作用下,仅采用前3阶模态参数即可准确预测简支梁桥的跨中模态挠度,中载和偏载工况下的误差均在5%以下;环境激励模态测试试验可以准确识别斜交宽简支梁前3阶模态参数,无需对桥梁施加额外激励措施;结合规范计算的桥梁跨中挠度校验系数在0.55~0.70之间,表明该简支梁桥建造状况良好;基于模态测试,可以准确评估简支梁桥建造质量,测试过程方便快捷,在实际工程中具有广阔的应用前景。 展开更多
关键词 斜交简支梁桥 模态测试 虚拟静载试验 校验系数
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强震下斜交桥地震反应与减隔震性能分析 被引量:1
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作者 石岩 裴银海 +2 位作者 张展宏 赵昊淼 朱明德 《世界地震工程》 北大核心 2023年第2期105-112,共8页
针对斜交桥在破坏性地震中发生破坏和损伤的突出问题,采用铅芯橡胶支座(LRB)进行隔震和滞回耗能。基于OpenSees平台建立了不同斜度的传统非隔震和全桥采用LRB隔震的4跨斜交连续梁桥动力分析模型,沿2个水平方向输入远场地震动和具有向前... 针对斜交桥在破坏性地震中发生破坏和损伤的突出问题,采用铅芯橡胶支座(LRB)进行隔震和滞回耗能。基于OpenSees平台建立了不同斜度的传统非隔震和全桥采用LRB隔震的4跨斜交连续梁桥动力分析模型,沿2个水平方向输入远场地震动和具有向前方向性效应、滑冲效应以及无速度脉冲效应的近断层地震动,并进行非线性时程计算,研究桥墩和挡块的损伤状态、主梁旋转度、碰撞力与斜交桥斜度的关系以及LRB对斜交桥抗震性能的影响。结果表明:向前方向性效应和滑冲效应的脉冲型地震动作用下的斜交桥地震反应和损伤明显大于无速度脉冲近断层和远场地震动作用;采用LRB隔震后,明显降低了固定墩的地震损伤,桥墩位移减震率可达到50%以上;LRB隔震桥主梁与挡块的间隙宜结合桥梁的地震风险和设计位移进行确定。 展开更多
关键词 斜交桥 近断层地震动 铅芯橡胶支座 地震响应 损伤分析
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错位缺陷对钢桥中厚板斜十字接头静力性能影响研究
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作者 苏庆田 沈翀 《桥梁建设》 EI CSCD 北大核心 2023年第5期17-23,共7页
为了解错位缺陷对钢桥中厚板斜十字接头静力性能的影响,以某主跨200 m的简支系杆拱桥拱-梁节点为背景进行研究。采用理论分析与有限元计算相结合的方法,分析错位量和斜交角度对厚板斜十字接头热点应力的影响,并提出考虑错位缺陷的厚板... 为了解错位缺陷对钢桥中厚板斜十字接头静力性能的影响,以某主跨200 m的简支系杆拱桥拱-梁节点为背景进行研究。采用理论分析与有限元计算相结合的方法,分析错位量和斜交角度对厚板斜十字接头热点应力的影响,并提出考虑错位缺陷的厚板斜十字接头应力集中系数的计算方法。结果表明:错位缺陷对斜十字接头的静力性能影响较大,负错位缺陷比正错位缺陷更不利;斜十字接头竖向支承板焊缝处最大热点应力与错位量近似正线性相关,并与斜交角度正相关;提出的应力集中系数的计算方法与有限元计算结果拟合较好,可应用于钢桥施工阶段产生错位缺陷的厚板斜十字接头受力情况的初步估算。 展开更多
关键词 钢桥 斜十字接头 错位缺陷 错位量 斜交角度 静力性能 理论分析 有限元法
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斜风下斜拉-悬吊组合体系桥静风稳定性研究
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作者 张新军 胡智勇 孙雷雷 《浙江工业大学学报》 北大核心 2023年第5期523-529,536,共8页
采用斜风作用下结构三维非线性静风稳定性分析程序(3DNASA-SW),以主跨1400 m的斜拉-悬吊组合体系桥设计方案为工程背景,进行了斜风作用下的静风稳定性分析,揭示了斜风作用对斜拉-悬吊组合体系桥静风稳定性的影响。分析结果表明:与法向... 采用斜风作用下结构三维非线性静风稳定性分析程序(3DNASA-SW),以主跨1400 m的斜拉-悬吊组合体系桥设计方案为工程背景,进行了斜风作用下的静风稳定性分析,揭示了斜风作用对斜拉-悬吊组合体系桥静风稳定性的影响。分析结果表明:与法向风情况类似,斜拉-悬吊组合体系桥的静风失稳为主梁竖向弯曲和扭转耦合主导的失稳形态,斜风作用不会影响其静风失稳形态;随风偏角增大,斜拉-悬吊组合体系桥静风失稳临界风速并非呈现如斜风分解法所述的余弦变化趋势,其最小值大多出现在斜风作用情形。程序与斜风分解法计算结果的差异率为-11.7%~2.9%,且以负值为主,斜风分解法将高估斜拉-悬吊组合体系桥的静风稳定性;斜风作用对斜拉-悬索组合体系桥的静风稳定性存在着正负影响,影响率为-4.7%~9.5%,尤其要注意非负攻角下较大风偏角斜风作用的不利影响。为准确预测斜拉-悬吊组合体系桥的静风稳定性,必须采用考虑静风荷载和结构非线性的斜风作用下结构三维非线性静风分析方法。 展开更多
关键词 斜风 斜拉-悬吊组合体系桥 静风稳定性 三维非线性分析 斜风分解法
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改善斜风下悬索桥施工期颤振稳定性措施研究
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作者 张新军 何智超 +1 位作者 李博林 赵晨阳 《浙江工业大学学报》 CAS 北大核心 2023年第2期160-170,共11页
为确保斜风下大跨度悬索桥施工期的颤振稳定性,结合润扬长江大桥南汊悬索桥,采用斜风下大跨度桥梁三维精细化颤振分析程序,分析斜风下加劲梁由跨中至两侧桥塔对称架设过程颤振稳定性的变化规律,指出斜风下悬索桥颤振稳定性薄弱的施工阶... 为确保斜风下大跨度悬索桥施工期的颤振稳定性,结合润扬长江大桥南汊悬索桥,采用斜风下大跨度桥梁三维精细化颤振分析程序,分析斜风下加劲梁由跨中至两侧桥塔对称架设过程颤振稳定性的变化规律,指出斜风下悬索桥颤振稳定性薄弱的施工阶段。在此基础上,提出并分析主梁由两侧桥塔至跨中对称架设和由跨中至两侧桥塔非对称架设两种方法对提高斜风下悬索桥施工期颤振稳定性的有效性,探索适宜的悬索桥主梁架设方法。研究结果表明:斜风作用会显著降低施工期悬索桥的颤振稳定性;主梁采用由跨中至桥塔方向拼装时,架设初期(拼装率小于20%)和中后期(拼装率为40%~80%)是悬索桥施工面临的两个颤振稳定性低谷期;主梁采用由两侧桥塔至跨中对称架设方法能显著提高主梁架设初期的颤振稳定性,而且整个施工期的颤振稳定性基本都能满足要求,总体平均增幅为34.2%;主梁由跨中至两侧桥塔非对称架设时,颤振临界风速并非随着偏心率增大而单调递增,呈现出先增大后降低的趋势,并在8.6%偏心率下达到峰值,在最优偏心率下施工全过程的颤振稳定性相比对称架设方法有显著提升,总体平均增幅为14.5%;从颤振稳定性角度而言,加劲梁采用由两侧桥塔至跨中对称架设方法最好,其次为跨中至两侧桥塔的非对称架设方法,传统的跨中至两侧桥塔对称架设方法最差。 展开更多
关键词 斜风 悬索桥 施工期 颤振稳定性 主梁架设方法
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斜风下斜拉-悬吊组合体系桥颤振性能研究
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作者 张新军 赵天娇 应赋斌 《浙江工业大学学报》 北大核心 2023年第4期426-432,共7页
为了解斜风作用下斜拉悬吊组合体系桥的颤振性能,采用考虑静风效应和全模态耦合影响的斜风下大跨度桥梁三维精细化颤振分析程序,以主跨1400 m的斜拉悬吊组合体桥设计方案为研究对象,分析了结构动力特性和斜风作用下结构的颤振稳定性,并... 为了解斜风作用下斜拉悬吊组合体系桥的颤振性能,采用考虑静风效应和全模态耦合影响的斜风下大跨度桥梁三维精细化颤振分析程序,以主跨1400 m的斜拉悬吊组合体桥设计方案为研究对象,分析了结构动力特性和斜风作用下结构的颤振稳定性,并揭示斜风和静风效应对斜拉悬吊组合体系桥颤振稳定性的影响。研究结果表明:斜拉悬索组合体系桥是长周期的大跨柔性结构,自振频率密集分布,模态耦合效应强,具有显著的多模态耦合颤振特点;斜拉悬索组合体系桥的颤振临界风速随着风偏角的增大呈现波动起伏变化特征,并非如斜风分解法所述呈单调递增的变化规律,且主要在斜风情况下达到最低值;斜风和静风效应均会降低斜拉悬索组合体系桥的颤振稳定性,且静风效应起主要作用;斜风和静风效应使颤振临界风速的平均降幅分别达到1.53%和9.83%,而斜风和静风的综合作用则进一步降低斜拉悬吊组合体系桥的颤振稳定性,降幅平均值达到了13.8%。因此,斜拉悬吊组合体系桥颤振分析必须综合考虑斜风和静风效应及其产生的不利影响。 展开更多
关键词 斜风 斜拉悬吊组合体系桥 颤振稳定性 动力特性 静风效应
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斜风作用下三塔悬索桥颤振稳定性研究
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作者 张新军 周楠 +1 位作者 郁聪 赵晨阳 《浙江工业大学学报》 CAS 北大核心 2023年第3期255-263,共9页
为了解斜风作用下三塔悬索桥的颤振稳定性,采用考虑静风作用和全模态耦合等因素的斜风作用下大跨度桥梁三维精细化颤振分析程序,对一座三塔悬索桥——泰州长江大桥开展了斜风下成桥和施工状态的颤振分析,探明了斜风和静风作用对三塔悬... 为了解斜风作用下三塔悬索桥的颤振稳定性,采用考虑静风作用和全模态耦合等因素的斜风作用下大跨度桥梁三维精细化颤振分析程序,对一座三塔悬索桥——泰州长江大桥开展了斜风下成桥和施工状态的颤振分析,探明了斜风和静风作用对三塔悬索桥颤振稳定性的影响。研究结果表明:三塔悬索桥成桥和施工状态的颤振临界风速随风偏角增大而起伏变化,且大多在斜风下达到最低值;斜风和静风作用均会明显降低三塔悬索桥成桥和施工状态的颤振稳定性,而斜风和静风的综合作用则会进一步劣化其颤振稳定性;斜风和静风作用基本不改变主梁架设过程颤振稳定性的演变规律,相较于成桥状态,斜风和静风作用进一步降低了主梁架设期三塔悬索桥的颤振稳定性,影响更显著。因此,三塔悬索桥颤振分析时须准确考虑斜风和静风作用的不利影响。 展开更多
关键词 斜风 三塔悬索桥 颤振稳定性 三维精细化分析 静风作用
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大宽跨比大斜交角空心板桥受力分析
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作者 王晓平 梁晨 《科学技术创新》 2023年第22期112-115,共4页
近年来,高速公路事业蓬勃发展,为适应路线走向,越来越多的斜桥在公路建设中得到应用。然而大宽跨比大斜交角的空心板桥在实践中的应用依然不多,其根源在于对其力学性能和构造设计的研究较少。本文对某在役大宽跨比大斜交角空心板桥进行... 近年来,高速公路事业蓬勃发展,为适应路线走向,越来越多的斜桥在公路建设中得到应用。然而大宽跨比大斜交角的空心板桥在实践中的应用依然不多,其根源在于对其力学性能和构造设计的研究较少。本文对某在役大宽跨比大斜交角空心板桥进行荷载试验和有限元计算,通过试验和计算数据的对比验证了有限元计算方法的准确性,然后通过有限元变参分析,研究不同斜交角小的大宽跨比空心板桥的横向分布系数和内力。通过计算分析,发现斜交桥的横向分布系数较正交桥更不均匀,说明斜交桥的横向刚度较正交桥差,同时,随着斜交角增大,主梁所受弯矩减小,扭矩增大,且斜交角40°以上的空心板桥受力较正交桥变化很大,需要单独设计计算。 展开更多
关键词 斜交桥 大斜交角 大宽跨比 横向分布系数 内力分析
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Development of the applicability of simplified Henry’s method for skewed multicell box-girder bridges under traffic loading conditions 被引量:1
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作者 Iman MOHSENI A.R.Khalim RASHID 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2012年第12期915-925,共11页
Concrete precast multicell box-girder(MCB) bridges combine aesthetics with torsional stiffness perfectly.Previous analytical studies indicate that currently available specifications are unable to consider the effect o... Concrete precast multicell box-girder(MCB) bridges combine aesthetics with torsional stiffness perfectly.Previous analytical studies indicate that currently available specifications are unable to consider the effect of the twisting moment(torsional moment) on bridge actions.In straight bridges the effect of torsion is negligible and the transverse reinforced design is governed by other requirements.However,in the case of skewed bridges the effect of the twisting moment should be considered.Therefore,an in-depth study was performed on 90 concrete MCB bridges with skew angles ranging from 0° to 60°.For each girder the bridge actions were determined under the American Association of State Highway and Transportation Officials(AASHTO) live load conditions.The analytical results show that torsional stiffness and live load positions greatly affected the bridges' responses.In addition,based on a statistical analysis of the obtained results,several skew correction factors are proposed to improve the precision of the simplified Henry's method,which is widely used by bridge engineers to predict bridge actions.The relationship between the bending moment and secondary moments was also investigated and it was concluded that all secondary actions increase with an increase in skewness. 展开更多
关键词 Distribution factor Live loads skewed bridges Grillage analysis
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斜交跨线连续梁桥换梁施工受力分析 被引量:1
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作者 蔡保硕 赵雪璞 +2 位作者 扈利 王坤 杨勇 《特种结构》 2023年第4期88-92,共5页
为研究斜交跨线连续梁桥换梁施工阶段的受力情况,对某斜交跨高速桥梁换梁施工进行了数值模拟。分析了换梁过程中主梁内力及桥梁挠度变化量,对不同施工阶段桥梁的受力情况进行了研究。结果表明,连续梁换梁施工存在着由连续体系转变为简... 为研究斜交跨线连续梁桥换梁施工阶段的受力情况,对某斜交跨高速桥梁换梁施工进行了数值模拟。分析了换梁过程中主梁内力及桥梁挠度变化量,对不同施工阶段桥梁的受力情况进行了研究。结果表明,连续梁换梁施工存在着由连续体系转变为简支体系的体系转换,随着桥梁上部结构分段拆除,主梁的内力及挠度均有所增加,且在最终变为简支结构时达到最大;新钢梁在架设拼装过程中应力变化不大,施加二期荷载后,梁体应力虽有较大程度的增加,但成桥阶段是钢桥的受力控制点。 展开更多
关键词 斜交跨线连续梁桥 换梁施工 施工阶段受力分析
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