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波形钢腹板-UHPC组合连续箱梁桥静力和抗震性能研究
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Study on Static and Seismic Performances of Corrugated Steel Webs-UHPC Composite Continuous Box Girder Bridge
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    摘要:

    为克服传统大跨预应力混凝土(Prestressed Concrete, PC)连续梁桥自重过大、跨中过度下挠和腹板开裂的问题,将超高性能混凝土(Ultra-high Performance Concrete, UHPC)与波形钢腹板(Corrugated Steel Web, CSW)组合,提出大跨径CSWs-UHPC组合连续箱梁桥方案,对该结构的静力性能和抗震性能进行了计算分析,并将其与CSWs-普通混凝土(Normal Concrete, NC)组合连续箱梁桥和PC连续箱梁桥进行对比,结果表明:相比CSWs-NC组合箱梁桥和PC箱梁桥,CSWs-UHPC组合箱梁桥的自重分别降低45%和54%;CSWs-UHPC组合箱梁桥耐久性强、全寿命周期内的经济性具有竞争力;静力计算结果满足规范要求;合理中支点梁高与中跨跨径比Hs/L为1/16~1/22,中跨跨中与中支点合理梁高比Hm/Hs为1/1.5~(-0.2+0.029L/Hs);CSWs-UHPC组合箱梁桥横向弯曲自振频率小于PC箱梁桥,竖向弯曲自振频率略大于CSWs-NC组合箱梁桥及PC箱梁桥,较轻的上部结构可大幅降低惯性荷载,使CSWs-UHPC组合箱梁桥具有优异的抗震性能.这种新型组合桥梁可有效克服大跨径连续梁桥下挠、开裂的病害,大幅降低地震响应,是大跨径连续梁桥中具有较强竞争优势的结构型式.

    Abstract:

    This paper develops a novel continuous composite box girder bridge by combining ultra-high performance concrete (UHPC) with corrugated steel webs (CSWs) to overcome the weaknesses of traditional long-span prestressed concrete (PC) continuous girder bridges, such as excessive dead load and deflection at the mid-span, and cracking in the webs. The static and seismic performances of the CSWs-UHPC continuous composite box girder bridge are investigated. And its dynamic performance is compared to that of CSWs-normal concrete (NC) and PC continuous composite box girder bridges. The results reveal that: when compared, respectively, with the CSWs-NC composite box girder bridges and PC box girder bridges, the dead load of the proposed composite structure is reduced by 45% and 54%, the CSWs-UHPC composite continuous box girder bridge is highly durable, economically competitive throughout its life cycle. The static properties of the developed CSWs-UHPC composite structure meet the requirements of the specification. The ratio of the reasonable girder depth at the support to the mid-span(Hs /L) is 1/16 ~ 1/22, and the ratio of the reasonable girder depth at the mid-span to that at the support(Hm /Hs) is 1/1.5 ~ (-0.2+0.029L/Hs). The CSWs-UHPC composite box girder bridge has a lower natural vibration frequency of transverse bending than the PC box girder bridge and a slightly greater natural vibration frequency of vertical bending than both the CSWs-NC composite box girder bridge and the PC box girder bridge. The lighter superstructure significantly reduces the inertia load, which makes the CSWs-UHPC composite box girder have excellent seismic performance. This new type of composite bridge can effectively address the issues previously mentioned for conventional long-span continuous bridges, as well as drastically minimize the seismic response. It will thus be a bridge type with competitive advantages over the traditional long-span continuous girder bridges.

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朱平 ,丁子贤 ,张哲 ?,邵旭东 .波形钢腹板-UHPC组合连续箱梁桥静力和抗震性能研究[J].湖南大学学报:自然科学版,2022,49(11):45~56

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  • 在线发布日期: 2022-12-12
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