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风屏障对平层公铁桥上列车气动特性影响的风洞试验研究 被引量:2
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作者 刘叶 韩艳 +3 位作者 胡朋 李凯 蔡春声 何旭辉 《振动工程学报》 EI CSCD 北大核心 2022年第2期284-296,共13页
基于列车测压试验,以平层公铁桥梁和CRH2列车为背景,分析了风屏障对平层公铁桥上列车表面风压分布的影响,研究了有无风屏障时列车表面压力以及气动力的跨向相关性的变化规律。研究结果表明:设置风屏障后,列车迎风面与背风面、顶面和底... 基于列车测压试验,以平层公铁桥梁和CRH2列车为背景,分析了风屏障对平层公铁桥上列车表面风压分布的影响,研究了有无风屏障时列车表面压力以及气动力的跨向相关性的变化规律。研究结果表明:设置风屏障后,列车迎风面与背风面、顶面和底面风压差随风屏障透风率的减小而减小,使得列车总体侧力和升力减小,风屏障透风率为20%时,列车表面脉动压力分布较均匀,有利于桥上列车运行时的安全与舒适。风屏障的防风效果不会随着风屏障高度的增加一直变好,透风率为40%时,风屏障存在一个最优高度3.5 m。风屏障透风率对列车迎风面以及顶面圆弧过渡段表面风压的影响明显大于高度。设置风屏障后,列车底面和背风面测点压力跨向相关性更好,风屏障的挡风效应增强了这两部分展向流场的一致性,使流体的脱落点更一致。随着跨向间距的增大,气动力的相关性越来越差,风屏障对气动力的跨向相关性较无风屏障时弱,设置风屏障时跨向间距超过5倍列车高,气动力完全不相关。 展开更多
关键词 风屏障 风洞试验 平均风压 脉动风压 跨向相关性
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可溶液处理镓萘酞菁酰亚胺类电子受体材料合成与表征
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作者 李磊 李莉 +6 位作者 马俊杰 付居标 蔡春生 陈玫玲 覃雪雁 袁忠义 陈义旺 《应用化学》 CAS CSCD 北大核心 2023年第11期1531-1538,共8页
设计、合成了5个酰亚胺镓萘酞菁电子受体(Cl-GaNcTI、OH-GaNcTI、R_(3)SiO-GaNcTI、F_(5)PhO-GaNcTI和QLO-GaNcTI),并将其作为受体材料应用于制备体相异质结有机太阳能电池。在波长300~1100 nm范围内,5种受体材料具有较强的近红外吸收,... 设计、合成了5个酰亚胺镓萘酞菁电子受体(Cl-GaNcTI、OH-GaNcTI、R_(3)SiO-GaNcTI、F_(5)PhO-GaNcTI和QLO-GaNcTI),并将其作为受体材料应用于制备体相异质结有机太阳能电池。在波长300~1100 nm范围内,5种受体材料具有较强的近红外吸收,最大消光系数高达6.18×10^(5)L/(mol·cm),较低的最低未占据分子轨道(LUMO)能级(-3.9 eV)和良好的热稳定性(热分解温度T_(d)>320℃),在萘酞菁轴向上引入长链取代基能够有效地减弱分子聚集性,均可用作体相异质结有机太阳能电池的受体材料。 展开更多
关键词 萘酞菁 有机太阳能电池 电子受体材料 近红外吸收
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Effects of sudden change in wind loads on running performance of trains on a highway-railway one-story bridge in crosswinds 被引量:2
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作者 HAN Yan LIU Ye +2 位作者 cai chun-sheng HU Peng HE Xu-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2621-2638,共18页
To investigate the effects of sudden change in wind loads on the running performance of trains on the bridge in crosswinds,a highway-railway one-story bridge was taken as the research object.Aerodynamic coefficients o... To investigate the effects of sudden change in wind loads on the running performance of trains on the bridge in crosswinds,a highway-railway one-story bridge was taken as the research object.Aerodynamic coefficients of the train and the bridge were measured in a series of train-bridge system segment models through wind tunnel tests when two trains passed each other on the bridge and when a train entered and left the wind barrier section of the bridge.Based on the improved SIMPACK and ANSYS rigid-flexible coupling simulation method,a wind-double train-track-bridge system coupled vibration model was established.The dynamic responses of the train were analyzed under the effects of sudden change in wind loads caused by two trains passing each other and a train entering and leaving the wind barrier section of the bridge.The results show that the effects of sudden wind load change caused by the trains passing each other had less effects on the running safety of the leeward-side train than the wind shielding effect caused by the windward-side train in the wind speed range of 10−25 m/s.With the decrease in the porosity of wind barriers,the effects of the sudden wind load change played an increasingly important role in the running safety and comfort of the train.With the increase in wind speed,the lateral response of the train increased obviously because of the effects of sudden wind load change,which affects both the lateral running stability and the comfort of the train. 展开更多
关键词 wind-train-track-bridge system two trains passing each other wind barrier sudden change in wind load dynamic response
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Numerical study on optimal structural parameters of train wind barrier based on orthogonal design 被引量:2
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作者 HAN Yan MI Li-hua +1 位作者 SHEN Lian cai chun-sheng 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2706-2718,共13页
Wind barriers have attracted significant attention as an effective measure to ensure train safety under crosswinds.However,in past decades,the influence of structural parameters such as the height and ventilation rati... Wind barriers have attracted significant attention as an effective measure to ensure train safety under crosswinds.However,in past decades,the influence of structural parameters such as the height and ventilation ratio of wind barriers on the difference of the average pressure coefficient between the train windward and leeward surface(ΔCp)has not been fully investigated.To determine the influence of the interaction among the three factors,namely the wind barrier height(H),ventilation ratio(R),and distance to the train(D),twenty five numerical simulation cases with different structural parameters were considered based on an orthogonal design.The shear stress transfer(SST)k-ωturbulent model was employed to calculate the wind pressure coefficients,and the calculation accuracy was validated by using wind tunnel experiments.The results indicated that with an increase in R,ΔCp first decreased and then increased,andΔCp decreased while D increased.Moreover,with the increase in H,ΔCp first increased and then decreased.Therefore,these three factors must be considered during the installation of wind barriers.Furthermore,according to a range analysis(judging the relative importance of the three factors intuitively),the three factors were ranked in the following order:R>H>D.Based on a variance analysis,R was found to be of high significance toΔCp,followed by H,which was significant,whereas D had relatively insignificant influence.Finally,the optimal values of R and H were determined to be 20%and 110 mm,respectively.And when R=40%,H=85 mm,the train was relatively unsafe under these such conditions.The findings of this study provide significant guidance for the structural design of wind barriers. 展开更多
关键词 wind barrier ventilation ratio HEIGHT numerical simulation orthogonal design
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