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Wind tunnel tests on aerodynamic characteristics of vehicles on same-storey highway and rail bridge under crosswind
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作者 ZOU Yun-feng xue fan-rong +2 位作者 HE Xu-hui HAN Yan LIU Qing-kuan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2513-2531,共19页
In recent years,the safety and comfort of road vehicles driving on bridges under crosswinds have attracted more attention due to frequent occurrences of wind-induced disasters.This study focuses on a container truck a... In recent years,the safety and comfort of road vehicles driving on bridges under crosswinds have attracted more attention due to frequent occurrences of wind-induced disasters.This study focuses on a container truck and CRH2 high-speed train as research targets.Wind tunnel experiments are performed to investigate shielding effects of trains on aerodynamic characteristics of trucks.The results show that aerodynamic interference between trains and trucks varies with positions of trains(upstream,downstream)and trucks(upwind,downwind)and numbers of trains.To summarize,whether the train is upstream or downstream of tracks has basically no effect on aerodynamic forces,other than moments,of a truck driving on windward sides of bridges(upwind).In contrast,the presence of trains on the bridge deck has a significant impact on aerodynamic characteristics of a truck driving on leeward sides(downwind)at the same time.The best shielding effect on lateral forces of trucks occurs when the train is located downstream of tracks.Finally,the pressure measuring system shows that only lift forces on trains are affected by trucks,while other forces and moments are primarily affected by adjacent trains. 展开更多
关键词 same-storey highway and rail bridge container truck CRH2 high-speed train aerodynamic characteristics wind tunnel test CROSSWIND
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横风下π型断面大跨桥上汽车气动特性风洞试验 被引量:8
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作者 何旭辉 薛繁荣 +4 位作者 邹云峰 蒋硕 杜镔 徐向东 马白虎 《中国公路学报》 EI CAS CSCD 北大核心 2019年第10期169-177,199,共10页
准确获得车-桥系统气动力是评估强风作用下桥上车辆运行安全性和舒适性的基本前提,为此必须考虑车辆与桥梁间存在的显著气动相互干扰。以山区大跨桥梁常见的π型断面主梁和集装箱货车为研究对象,设计并制作了1∶32几何缩尺比的桥梁和车... 准确获得车-桥系统气动力是评估强风作用下桥上车辆运行安全性和舒适性的基本前提,为此必须考虑车辆与桥梁间存在的显著气动相互干扰。以山区大跨桥梁常见的π型断面主梁和集装箱货车为研究对象,设计并制作了1∶32几何缩尺比的桥梁和车辆刚性测压模型,通过风洞试验测试了典型车-桥组合工况下车辆表面的风压分布,分析了前、后车辆干扰作用、车辆横向距离和车道组合方式等对桥上汽车气动特性的影响,并进一步分析汽车表面的风压值分布,以探究汽车气动力系数变化的机理。研究结果表明:前、后车辆间的干扰、车辆横向距离的改变对汽车的侧向力系数、阻力系数和升力系数均有较大影响,但对汽车的力矩系数影响较小,且汽车的力矩系数具有一定的离散性;车道组合方式中测试车辆位置的改变对汽车气动特性的影响大于干扰车辆位置的改变对汽车气动特性的影响,且车辆组合方式的改变对汽车的力矩系数基本没有影响;受桥梁π型主梁断面的影响,汽车侧向力系数的变化趋势与Coleman规律下的变化趋势不同。 展开更多
关键词 桥梁工程 π型断面 风洞试验 车-桥系统 车辆 气动特性
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