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Numerical calculation on solar temperature field of a cable-stayed bridge with U-shaped section on high-speed railway 被引量:3
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作者 刘文硕 戴公连 饶少臣 《Journal of Central South University》 SCIE EI CAS 2014年第8期3345-3352,共8页
Based on transient temperature field theory of heat conduction, the solar temperature field calculation model of U-shape sectioned high-speed railway cable-stayed bridge under actions of concrete beams and ballast was... Based on transient temperature field theory of heat conduction, the solar temperature field calculation model of U-shape sectioned high-speed railway cable-stayed bridge under actions of concrete beams and ballast was established. Using parametric programming language, finite element calculation modules considering climate conditions, bridge site, structure dimension and material thermophysical properties were compiled. Six standard day cycles with the strongest yearly radiation among the bridge sites were selected for sectional solar temperature field calculation and temperature distributions under different temperature-sensitive parameters were compared. The results show that under the influence of sunshine, U-shape section of the beam shows obvious nonlinear distribution characteristics and the maximum cross-section temperature difference is more than 21℃; the ballast significantly reduces sunshine temperature difference of the beam and temperature peak of the bottom margin lags with the increase of ballast thickness; the maximum cross-section vertical temperature gradient appears in summer while large transverse temperature difference appears in winter. 展开更多
关键词 high-speed railway cable-stayed bridge u-shaped section solar temperature field thermal analysis
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pH-dependent Synthesis of Octa-nuclear Uranyl-oxalate Network Mediated by U-shaped Linkers
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作者 WU Si MEI Lei +3 位作者 HU Kong-Qiu CHAI Zhi-Fang NIE Chang-Ming SHI Wei-Qun 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2020年第2期243-249,I0009-I0014,共13页
In this work,we report a novel octa-nuclear uranyl(U8)motif[(UO2)8O4(μ3-OH)2(μ2-OH)2]4+embedded in a uranyl-oxalate coordination polymer(compound 1)based on a U-shaped linker with extra-long xylylene chains for stab... In this work,we report a novel octa-nuclear uranyl(U8)motif[(UO2)8O4(μ3-OH)2(μ2-OH)2]4+embedded in a uranyl-oxalate coordination polymer(compound 1)based on a U-shaped linker with extra-long xylylene chains for stabilizing the resulting high-nuclear motif through additional cross-linking connectivity.A comparison with dimeric and monomeric uranyl compounds obtained at different pH value from the same hydrothermal system reveals that,solution pH plays a vital role in formation of this octa-nuclear uranyl motif by promoting hydrolysis of uranyl source.Since high similarity of eight uranium centers in this nearly planar U8 motif here,overlapping and broadening of signals in fluorescence,infra-red(IR)and Raman spectra can be found. 展开更多
关键词 actinide coordination polymers octa-nuclear uranyl u-shaped Linker pH effect
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Sagging damage characteristics of hull girder with trapezoidal cross-section subjected to near-field underwater explosion 被引量:4
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作者 Hai-tao Li Xin-ying Zheng +3 位作者 Chi Zhang Zhi-yuan Mei Xue-fei Bai Kai Liu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第3期1-13,共13页
To investigate the overall damage characteristics and failure modes of a warship subjected to an underwater non-contact near-field explosion,a hull girder with a trapezoidal cross-section was designed,manufactured,and... To investigate the overall damage characteristics and failure modes of a warship subjected to an underwater non-contact near-field explosion,a hull girder with a trapezoidal cross-section was designed,manufactured,and tested.The design criteria and parameters were determined according to the similarity criterion.Dynamic responses of the girder freely floating on water were obtained under varying conditions,including stand-off distance,charge mass,and position of attack.Damage morphologies of the girder model were obtained.Based on our analysis,basic conditions for sagging damage of the hull girder are proposed.The aim of this study was to determine an efficient method of attack resulting in the most severe damage to the ship hull.The experimental results show that the girder mainly exhibits a first-order response when the first wet frequency of the girder is close to the frequency of the explosion bubble pulsation.The largest deformation was observed when the underwater explosion occurred directly below the midspan of the girder compared to other explosions of the same intensity at different attack positions.When the ratio of stand-off to maximum bubble radius(λ)satisfies 0.7≤λ<2,the bubble mainly causes sagging damage instead of hogging.Asλdecreases(1≤λ<2),the sagging damage increases under the same charge mass.However,asλdecreases further(0.7≤λ<1),the sagging deformation decreases.This is likely due to the impact of the liquid jet formed by the collapsing bubble,which causes the girder deformation to shift from sagging back to hogging deformation.The initial shock wave excites the high-frequency response of the girder structure but contributes very little to the overall velocity and displacement.However,bubble pulsation typically causes a low-frequency response,which will affect the velocity and displacement of the girder.The low-pressure region of the flow field formed by bubble pulsation and resonant coupling between the girder and the bubble are the predominant causes of damage to the overall girder structure. 展开更多
关键词 UNDERWATER BUBBLE girder
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Closed-form solution to thin-walled box girders considering effects of shear deformation and shear lag 被引量:18
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作者 周旺保 蒋丽忠 +1 位作者 刘志杰 刘小洁 《Journal of Central South University》 SCIE EI CAS 2012年第9期2650-2655,共6页
Considering three longitudinal displacement functions and uniform axial displacement functions for shear lag effect and uniform axial deformation of thin-walled box girder with varying depths,a simple and efficient me... Considering three longitudinal displacement functions and uniform axial displacement functions for shear lag effect and uniform axial deformation of thin-walled box girder with varying depths,a simple and efficient method with high precision to analyze the shear lag effect of thin-walled box girders was proposed.The governing differential equations and boundary conditions of the box girder under lateral loading were derived based on the energy-variational method,and closed-form solutions to stress and deflection corresponding to lateral loading were obtained.Analysis and calculations were carried out with respect to a trapezoidal box girder under concentrated loading or uniform loading and a rectangular box girder under concentrated loading.The analytical results were compared with numerical solutions derived according to the high order finite strip element method and the experimental results.The investigation shows that the closed-form solution is in good agreement with the numerical solutions derived according to the high order finite strip method and the experimental results,and has good stability.Because of the shear lag effect,the stress in cross-section centroid is no longer zero,thus it is not reasonable enough to assume that the strain in cross-section centroid is zero without considering uniform axial deformation. 展开更多
关键词 shear lag effect thin-walled box girder energy-variational method shear deformation closed-form solution
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Flow field simulation and establishment for mathematical models of flow area of spool valve with sloping U-shape notch machined by different methods 被引量:10
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作者 王兆强 顾临怡 +2 位作者 冀宏 陈家旺 李林 《Journal of Central South University》 SCIE EI CAS 2014年第1期140-150,共11页
Precise function expression of the flow area for the sloping U-shape notch orifice versus the spool stroke was derived. The computational fluid dynamics was used to analyze the flow features of the sloping U-shape not... Precise function expression of the flow area for the sloping U-shape notch orifice versus the spool stroke was derived. The computational fluid dynamics was used to analyze the flow features of the sloping U-shape notch on the spool, such as mass flow rates, flow coefficients, effiux angles and steady state flow forces under different operating conditions. At last, the reliability of the mathematical model of the flow area for the sloping U-shape notch orifice on the spool was demonstrated by the comparison between the orifice area curve derived and the corresponding experimental data provided by the test. It is presented that the bottom arc of sloping U-shape notch (ABU) should not be omitted when it is required to accurately calculate the orifice area of ABU. Although the theoretical flow area of plain bottom sloping U-shape notch (PBU) is larger than that of ABU at the same opening, the simulated mass flow and experimental flow area of ABU are both larger than these of PBU at the same opening, while the simulated flow force of PBU is larger than that of ABU at the same opening. Therefore, it should be prior to adapt the ABU when designing the spool with proportional character. 展开更多
关键词 spool valve flow field simulation flow area steady state flow force mathematical model sloping u-shape notch
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Estimating extreme temperature differences in steel box girder using long-term measurement data 被引量:5
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作者 丁幼亮 王高新 《Journal of Central South University》 SCIE EI CAS 2013年第9期2537-2545,共9页
The extreme temperature differences in fiat steel box girder of a cable-stayed bridge were studied.Firstly,by using the long-term measurement data collected by the structural health monitoring system installed on the ... The extreme temperature differences in fiat steel box girder of a cable-stayed bridge were studied.Firstly,by using the long-term measurement data collected by the structural health monitoring system installed on the Runyang Cable-stayed Bridge,the daily variations as well as seasonal ones of measured temperature differences in the box girder cross-section area were summarized.The probability distribution models of temperature differences were further established and the extreme temperature differences were estimated with a return period of 100 years.Finally,the temperature difference models in cross-section area were proposed for bridge thermal design.The results show that horizontal temperature differences in top plate and vertical temperature differences between top plate and bottom plate are considerable.All the positive and negative temperature differences can be described by the weighted sum of two Weibull distributions.The maximum positive and negative horizontal temperature differences in top plate are 10.30 ℃ and -13.80 ℃,respectively.And the maximum positive and negative vertical temperature differences between top plate and bottom plate are 17.30 ℃ and-3.70 ℃,respectively.For bridge thermal design,there are two vertical temperature difference models between top plate and bottom plate,and six horizontal temperature difference models in top plate. 展开更多
关键词 structural health monitoring cable-stayed bridge steel box girder temperature difference extreme value analysis
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Temperature gradients in concrete box girder bridge under effect of cold wave 被引量:3
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作者 顾斌 陈志坚 陈欣迪 《Journal of Central South University》 SCIE EI CAS 2014年第3期1227-1241,共15页
The temperature distributions of a prestressed concrete box girder bridge under the effect of cold wave processes were analyzed. The distributions were found different from those under the effect of solar radiation or... The temperature distributions of a prestressed concrete box girder bridge under the effect of cold wave processes were analyzed. The distributions were found different from those under the effect of solar radiation or nighttime radiation cooling and should not be simplified as one dimensional. A temperature predicting model that can accurately predict temperatures over the cross section of the concrete box girder was developed. On the basis of the analytical model, a two-dimensional temperature gradient model was proposed and a parametric study that considered meteorological factors was performed. The results of sensitivity analysis show that the cold wave with shorter duration and more severe temperature drop may cause more unfavorable influences on the concrete box girder bridge. Finally, the unrestrained linear curvatures, self-equilibrating stresses and bending stresses when considering the frame action of the cross section, were derived from the proposed temperature gradient model and current code provisions, respectively. Then, a comparison was made between the value calculated against proposed model and several current specifications. The results show that the cold wave may cause more unfavorable effect on the concrete box girder bridge, especially on the large concrete box girder bridge. Therefore, it is necessary to consider the thermal effect caused by cold wave during the design stage. 展开更多
关键词 concrete box girder temperature field temperature gradient cold wave
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Controlling deflection of long steel I-shaped girder bridge using two V-shaped pre-tensioning cables 被引量:2
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作者 Fatemeh PARTOVI Nader FANAIE 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期566-577,共12页
Despite appropriate design of girder under bending and shear,the deflection of long steel girders usually exceeds the allowable range,and therefore the structural designers encounter challenges in this regard.Consider... Despite appropriate design of girder under bending and shear,the deflection of long steel girders usually exceeds the allowable range,and therefore the structural designers encounter challenges in this regard.Considering significant features of the cables,namely,low weight,small cross section,and high tensile strength,they are used in this research so as to control the deflection of long girder bridges,rather than increasing their heights.In this study,theoretical relations are developed to calculate the increase in pre-tensioning force of V-shaped steel cables under external loading as well as the deflection of steel girder bridges with V-shaped cables and different support conditions.To verify the theoretical relations,the steel girder bridge is modeled in the finite element ABAQUS software with different support conditions without cable and with V-shaped cables.The obtained results show that the theoretical relations can appropriately predict the deflection of girder bridge with V-shaped cables and different support conditions.In this study,the effects of the distance from support on the deflection of mid span are studied in both simply supported and fixed supported girder bridge so as to obtain the appropriate distance from support causing the minimum deflection. 展开更多
关键词 DEFLECTION steel bridge I-shaped girder V-shaped cable pre-tensioning least work
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Experimental analysis of additional aerodynamic effects caused by wind-driven rain on bridge main girder 被引量:1
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作者 LEI Xu SHEN Lian +3 位作者 CHEN Zheng-qing NIU Hua-wei WEI Cheng-long ZHANG Xue-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2743-2756,共14页
To study the additional aerodynamic effect on a bridge girder under the action of wind-driven rain, the rainfall similarity considering raindrop impact and surface water is first given. Then, the dynamic characteristi... To study the additional aerodynamic effect on a bridge girder under the action of wind-driven rain, the rainfall similarity considering raindrop impact and surface water is first given. Then, the dynamic characteristics and the process of vortex and flutter generation of the segment models under different rain intensities and angles of attack are tested by considering several typical main girder sections as examples. The test results indicate that the start and end wind speeds,interval length and number of vortex vibrations remain unchanged when it is raining, rainfall will reduce the windinduced vortex response. When test rain intensity is large, the decrease of amplitude is obvious. However, after considering the rain intensity similarity in this study, all of actual maximum rain intensities after conversion approach the domestic extreme rain intensity of approximately 709 mm/h. It can be observed that rainfall has a limited influence on the dynamic characteristics of the structure and vortex vibration response. When the test rain intensity is 120 mm/h, the critical wind speed of the model flutter increases by 20%-30%. However, after considering the rain intensity similarity ratio, the influence of rainfall on the wind-induced flutter instability of the bridge girder may be ignored. 展开更多
关键词 bridge engineering main girder wind-driven rain similarity law aerodynamic effect
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Flexural failure experiment on cracked PC simply supported box girders 被引量:1
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作者 CAO Guo-hui ZHANG Wang +1 位作者 PENG Xi-rong ZHANG Sheng 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第11期2685-2692,共8页
Long-term load and flexural failure experiments are carried out on two prestressed concrete(PC) simply supported box girders. In the long-term load experiment, girder-1(G1) is in an elastic state, while girder-2(G2) i... Long-term load and flexural failure experiments are carried out on two prestressed concrete(PC) simply supported box girders. In the long-term load experiment, girder-1(G1) is in an elastic state, while girder-2(G2) is in a cracking state. To investigate the influence of cracking on the flexural behaviors of PC simply supported box beams, the experiment results are analyzed from many aspects, such as load–deflection, load–strain, and failure mode. Experiment results show the following: 1) the shrinkage and creep of concrete have considerable influences on the long-term deflection and strain of the two girders; 2) in the flexural failure experiment, the cracks and ultimate loads of the two girders are close. The rigidity degeneration of G2 is significantly faster than that of G1, and thus G2 shows nonlinear characteristics earlier; 3) to prove the validity and rationality of the current code, the cracking load and ultimate load of the two girders are calculated according to the current code. 展开更多
关键词 PC box girders long-term load experiment flexural behaviors cracks static performance
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Health monitoring and comparative analysis of time-dependent effect using different prediction models for self-anchored suspension bridge with extra-wide concrete girder 被引量:1
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作者 ZHOU Guang-pan LI Ai-qun +1 位作者 LI Jian-hui DUAN Mao-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2025-2039,共15页
The structural health status of Hunan Road Bridge during its two-year service period from April 2015 to April 2017 was studied based on monitored data.The Hunan Road Bridge is the widest concrete self-anchored suspens... The structural health status of Hunan Road Bridge during its two-year service period from April 2015 to April 2017 was studied based on monitored data.The Hunan Road Bridge is the widest concrete self-anchored suspension bridge in China at present.Its structural changes and safety were evaluated using the health monitoring data,which included deformations,detailed stresses,and vibration characteristics.The influences of the single and dual effects comprising the ambient temperature changes and concrete shrinkage and creep(S&C)were analyzed based on the measured data.The ANSYS beam finite element model was established and validated by the measured bridge completion state.The comparative analyses of the prediction results of long-term concrete S&C effects were conducted using CEB-FIP 90 and B3 prediction models.The age-adjusted effective modulus method was adopted to simulate the aging behavior of concrete.Prestress relaxation was considered in the stepwise calculation.The results show that the transverse deviations of the towers are noteworthy.The spatial effect of the extra-wide girder is significant,as the compressive stress variations at the girder were uneven along the transverse direction.General increase and decrease in the girder compressive stresses were caused by seasonal ambient warming and cooling,respectively.The temperature gradient effects in the main girder were significant.Comparisons with the measured data showed that more accurate prediction results were obtained with the B3 prediction model,which can consider the concrete material parameters,than with the CEB-FIP 90 model.Significant deflection of the midspan girder in the middle region will be caused by the deviations of the cable anchoring positions at the girder ends and tower tops toward the midspan due to concrete S&C.The increase in the compressive stresses at the top plate and decrease in the stresses at the bottom plate at the middle midspan will be significant.The pre-deviations of the towers toward the sidespan and pre-lift of the midspan girder can reduce the adverse influences of concrete S&C on the structural health of the self-anchored suspension bridge with extra-wide concrete girder. 展开更多
关键词 self-anchored suspension bridge extra-wide concrete girder health monitoring concrete shrinkage and creep prediction model ambient temperature change safety evaluation
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Aerodynamic interference effects between a triple-box girder and trains on aerodynamic forces and vortex-induced vibration
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作者 YANG Ling-bo HUA Xu-gang +2 位作者 WANG Chao-qun HE Dong-sheng CHEN Zheng-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2532-2541,共10页
Wind tunnel tests were carried out to investigate the aerodynamic interference between a triple-box girder and trains,involving static aerodynamic forces and vortex-induced vibrations(VIVs).Static and dynamic sectiona... Wind tunnel tests were carried out to investigate the aerodynamic interference between a triple-box girder and trains,involving static aerodynamic forces and vortex-induced vibrations(VIVs).Static and dynamic sectional models of the girder and trains were employed for aerodynamic force measurement and VIV test,respectively.Results indicate that the aerodynamic interference effect on static aerodynamic forces of both the girder and trains is remarkable.When a single train exists,the horizontal position of the train has a small effect on aerodynamic coefficients of the girder.When two trains meet on the girder,the drag coefficient of the girder is significantly reduced compared with that of without train or with a single train;besides,during the whole meeting process,aerodynamic forces of the leeward train first drop and then increase suddenly.The fluctuation of aerodynamic force could cause redundant vibration of the train,which is unfavorable for safety and comfort.A train on the girder could worsen the girder VIV performance:a new vertical VIV appears in the triple-box girder when a train is on the girder,and the torsional VIV amplitude increases significantly when the train is on the windward side. 展开更多
关键词 triple-box girder wind tunnel test train-girder system aerodynamic interference vortex-induced vibration
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Explosion resistance performance of reinforced concrete box girder coated with polyurea:Model test and numerical simulation
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作者 Guangpan Zhou Rong Wang +2 位作者 Mingyang Wang Jianguo Ding Yuye Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期1-18,共18页
To study the anti-explosion protection effect of polyurea coating on reinforced concrete box girder,two segmental girder specimens were made at a scale of 1:3,numbered as G(without polyurea coating)and PCG(with polyur... To study the anti-explosion protection effect of polyurea coating on reinforced concrete box girder,two segmental girder specimens were made at a scale of 1:3,numbered as G(without polyurea coating)and PCG(with polyurea coating).The failure characteristics and dynamic responses of the specimens were compared through conducting explosion tests.The reliability of the numerical simulation using LS-DYNA software was verified by the test results.The effects of different scaled distances,reinforcement ratios,concrete strengths,coating thicknesses and ranges of polyurea were studied.The results show that the polyurea coating can effectively enhance the anti-explosion performance of the girder.The top plate of middle chamber in specimen G forms an elliptical penetrating hole,while that in specimen PCG only shows a very slight local dent.The peak vertical displacement and residual displacement of PCG decrease by 74.8% and 73.7%,respectively,compared with those of specimen G.For the TNT explosion with small equivalent,the polyurea coating has a more significant protective effect on reducing the size of fracture.With the increase of TNT equivalent,the protective effect of polyurea on reducing girder displacement becomes more significant.The optimal reinforcement ratio,concrete strength,thickness and range of polyurea coating were also drawn. 展开更多
关键词 Explosive load Explosion resistance performance Model test POLYUREA Concrete box girder Numerical simulation
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Characteristics of aerodynamic force and flow structure behind single box girder under isolated slit control
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作者 CHEN Guan-bin CHENWen-li 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2542-2557,共16页
An isolated slit was placed in a single box girder to obtain passive leading-edge suction and trailing-edge jet flow to control the unsteady aerodynamic force and modify the flow structure.The Great Belt East Bridge w... An isolated slit was placed in a single box girder to obtain passive leading-edge suction and trailing-edge jet flow to control the unsteady aerodynamic force and modify the flow structure.The Great Belt East Bridge was used as a physical model at a geometric scale of 1:125.Wind tunnel experiments were conducted at an incoming airflow speed of 10 m/s,and the Reynolds number was calculated as 2.3×104 using the test model height and wind speed.The surface pressure distribution was measured,and the aerodynamic force acting on the test model with and without the isolated slit was calculated by integrating the pressure result.It was found that the control using an isolated slit can dramatically decrease the fluctuating surface pressure distribution and aerodynamic force.An analysis on the power spectral density of the lift force revealed that the isolated slit accelerated vortex shedding.Moreover,high-speed particle image velocimetry was used to investigate the wake flow structure behind the test model.A vortex separated from the upper surface was pushed to a lower location and the wake flow structure was modified by the isolated slit.A proper orthogonal decomposition(POD)of the flow field showed that the first two POD modes in the controlled case contributed less energy than those in the uncontrolled case,indicating that more energy was transferred to higher modes,and small-scale vortices had more energy.A secondary instability structure was found in the wake flow for a nondimensional jet momentum coefficient J of 0.0667. 展开更多
关键词 single box girder isolated slit aerodynamic force proper orthogonal decomposition(POD)mode
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杭州湾跨海铁路大桥引桥80 m预制混凝土箱梁水化热分析及裂缝控制研究 被引量:1
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作者 贾卫中 蔡金标 +1 位作者 王天羽 贺拥超 《桥梁建设》 北大核心 2025年第3期1-10,共10页
杭州湾跨海铁路大桥引桥为(60+n×80+60)m长联预应力混凝土等高连续梁桥,全桥共10联,最长联3080 m,混凝土箱梁采用整孔预制架设、先简支后连续的方法施工。为分析大跨箱梁预制阶段混凝土水化热特性,降低混凝土开裂风险,在首片80 m... 杭州湾跨海铁路大桥引桥为(60+n×80+60)m长联预应力混凝土等高连续梁桥,全桥共10联,最长联3080 m,混凝土箱梁采用整孔预制架设、先简支后连续的方法施工。为分析大跨箱梁预制阶段混凝土水化热特性,降低混凝土开裂风险,在首片80 m混凝土箱梁预制阶段,对其端部、跨中截面混凝土温度和应变进行连续监测,采用MIDAS FEA软件模拟箱梁施工过程,进行水化热数值分析,并从混凝土入模温度、养护措施和预应力初张拉方面进行水化热温度裂缝控制研究。结果表明:截面局部尺寸越大,水化热峰值温度越高,混凝土表面应力越大;端部节段高温区域主要集中在腹板芯部,跨中附近节段高温区域主要集中在腹板和顶板交界处;端部节段在混凝土浇筑后30~70 h时段存在开裂风险;提高混凝土入模温度,混凝土表面应力峰值减小,可降低混凝土开裂风险,建议混凝土入模温度满足规范要求的小于30℃即可;提高箱梁内腔风速,可加快降温速率,对尽早拆除芯模、提前进行预应力初张拉有利,建议箱梁内腔风速为1~4 m/s;预应力初张拉可提高箱梁混凝土早期抗裂性能,有效降低箱梁混凝土开裂风险。 展开更多
关键词 高速铁路桥 连续梁桥 预制混凝土箱梁 水化热 温度裂缝 温度场 应力场 有限元法
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双边工字钢-混组合曲线梁桥收缩徐变效应研究 被引量:2
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作者 闫磊 邢俊鹏 +1 位作者 牛哲 刘金鑫 《桥梁建设》 北大核心 2025年第1期95-102,共8页
为了解收缩徐变对双边工字钢-混组合曲线梁桥受力性能的影响,以该类型某3×35 m曲线梁为背景,开展模型试验及有限元分析。按1∶5的缩尺比制作曲率半径92 m的2×7 m试验梁,先对承载自重+配重3个月的试验梁挠度、应力进行观测,再... 为了解收缩徐变对双边工字钢-混组合曲线梁桥受力性能的影响,以该类型某3×35 m曲线梁为背景,开展模型试验及有限元分析。按1∶5的缩尺比制作曲率半径92 m的2×7 m试验梁,先对承载自重+配重3个月的试验梁挠度、应力进行观测,再使该试验梁承受自重+配重+开裂荷载11个月(即14个月龄期)进行同等观测。采用有限元法对不同曲率半径下3×35 m曲线组合梁桥的钢主梁挠度、应力长期(10年)增长系数取值进行研究。结果表明:14个月龄期后,试验梁挠度增加,增量约为初始挠度的10%,曲线内、外侧钢主梁挠度差可忽略不计;中支点处应力增加,距梁端0.4L(L为该跨跨径)处应力减少。当3×35 m曲线梁桥的曲率半径由460 m增加至1000 m时,对于挠度长期增长系数,中跨跨中处曲线内侧钢主梁由0.35线性变化至0.06、曲线外侧钢主梁由-1.13线性变化至-0.18,边跨距梁端0.4L处曲线内、外侧钢主梁不变,均取1.1;对于应力长期增长系数,中跨跨中处曲线内侧钢主梁由-0.44线性变化至-0.36、曲线外侧钢主梁由-0.27线性变化至-0.34,边跨距梁端0.4L处曲线内、外侧钢主梁不变,分别取0.89、0.90,中支点处的曲线内、外侧钢主梁不变,分别取1.35、1.30。 展开更多
关键词 钢-混组合梁桥 曲线梁桥 收缩徐变 应力 挠度 曲率半径 缩尺模型试验 有限元法
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不同比例尺铁路桥箱梁风洞试验涡振对比 被引量:1
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作者 王骑 黄林 +2 位作者 高贵 李世文 宁伯伟 《铁道工程学报》 北大核心 2025年第1期64-68,76,共6页
研究目的:整体式钝体钢箱梁作为大跨度铁路桥近年来采用的一种主梁形式,涡激振动现象较为显著,为研究比例尺对铁路桥钝体箱梁节段模型涡振试验的影响,采用1∶90、1∶50与1∶25节段模型风洞试验,对比不同比例尺试验下铁路桥钝体箱梁断面... 研究目的:整体式钝体钢箱梁作为大跨度铁路桥近年来采用的一种主梁形式,涡激振动现象较为显著,为研究比例尺对铁路桥钝体箱梁节段模型涡振试验的影响,采用1∶90、1∶50与1∶25节段模型风洞试验,对比不同比例尺试验下铁路桥钝体箱梁断面的涡振响应,在此基础上分析研究铁路桥钝体箱梁节段模型风洞试验的适宜缩尺比。研究结论:(1)铁路桥钝体箱梁的涡激振动试验结果受模型比例尺影响较大,其中1∶50节段模型试验中获得的断面涡振响应最为显著,通过1∶25比例尺试验获得的断面涡振响应较小,但该两种比例尺模型的主要涡振特性试验结果大致吻合;(2)1∶90节段模型试验在各风攻角下均没有测试到断面的涡振响应,采用小尺度模型试验无法有效反映钝体箱梁铁路桥实桥的涡振特性;(3)在不考虑节段模型系统满足与实桥间质量与质量惯性矩相似律的条件下,可以在小尺度(1∶90比例尺)模型试验中获得铁路桥钝体箱梁断面的涡激振动,虽无法借此判定实际铁路桥梁的涡振响应,但可借此对比断面涡振性能的高低,在主梁设计阶段初期辅助完成气动优化措施的研究;(4)本研究成果可为大跨度铁路桥箱梁的风洞试验比例尺设定提供参考。 展开更多
关键词 铁路桥钝体箱梁 涡激振动 风洞试验 模型比例尺 雷诺数
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中低速磁浮列车-轨道-T构梁耦合振动 被引量:1
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作者 娄会彬 魏凌云 +3 位作者 彭也也 魏高恒 龚俊虎 赵春发 《铁道建筑》 北大核心 2025年第2期83-88,共6页
为评估中低速磁浮列车在大跨度T构梁上的走行性能,建立了磁浮列车-轨道-T构梁耦合动力学模型。该模型由考虑了PID控制系统的磁浮车辆动力学模型、T构梁和轨道有限元模型组成。基于该模型仿真计算了20~160 km/h速度下磁浮车-轨-桥耦合系... 为评估中低速磁浮列车在大跨度T构梁上的走行性能,建立了磁浮列车-轨道-T构梁耦合动力学模型。该模型由考虑了PID控制系统的磁浮车辆动力学模型、T构梁和轨道有限元模型组成。基于该模型仿真计算了20~160 km/h速度下磁浮车-轨-桥耦合系统的动力学响应,研究了行车速度对车-桥系统动力学响应的影响规律。结果表明:车-桥系统动力学响应均随速度的增大而增大,在160 km/h处取得最大值。梁体和轨排竖向位移随速度变化较小,跨中处梁体最大竖向位移为2.39 mm,梁体竖向加速度最大值为0.14 m/s^(2)。车体前端竖向加速度取得最大值0.49 m/s^(2),悬浮间隙波动量最大值可达2.28 mm。随着速度的增大,车辆乘坐舒适性逐渐降低,但在20~160 km/h范围内磁浮列车运行平稳性等级仍为优。 展开更多
关键词 磁浮列车 电磁悬浮 T构梁 数值仿真 车-桥耦合振动
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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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爆炸冲击荷载下装配式钢筋混凝土工字梁桥损伤机理研究 被引量:1
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作者 李源 蔺渠通 +2 位作者 殷怡萍 王尧翔 董勤龙 《桥梁建设》 北大核心 2025年第1期72-79,共8页
为提升装配式工字梁桥的抗爆防护性能,制作3片跨径150 cm的钢筋混凝土工字试验梁,进行接触爆炸试验,得到试验梁在50、100、200 g爆炸当量下的损伤表征,并与数值模型分析结果对比验证。以中山西环高速公路桥为背景,建立装配式工字梁桥数... 为提升装配式工字梁桥的抗爆防护性能,制作3片跨径150 cm的钢筋混凝土工字试验梁,进行接触爆炸试验,得到试验梁在50、100、200 g爆炸当量下的损伤表征,并与数值模型分析结果对比验证。以中山西环高速公路桥为背景,建立装配式工字梁桥数值分析模型,根据美国联邦紧急措施署(FEMA)标准,分析等效227 kg和454 kg爆炸当量下的装配式工字梁桥受爆力学性能和动力响应。结果表明:工字试验梁在50、100、200 g爆炸当量的接触爆炸试验中表现出局部冲剪破坏模式,顶板破坏特征为由腹板向自由边45°方向的混凝土脱落,并出现纵向裂缝,腹板破坏为显著的冲剪破坏,其冲剪高度随爆炸当量的增加而增大;在爆炸荷载下,装配式工字梁桥结构损伤特征表现为局部冲剪破坏、整体弯曲变形和高频振动;454 kg爆炸当量下,工字梁桥主梁动能峰值显著高于227 kg爆炸当量,到达峰值时间更早,且残余变形明显,导致承载能力下降;装配式工字梁桥设计时应优先增强结构的局部抗冲剪性能,同时加强横向联系及主梁截面高度。 展开更多
关键词 装配式梁桥 钢筋混凝土工字梁 爆炸当量 冲剪破坏 动力响应 模型试验 爆炸试验 数值分析
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