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Dynamic Characteristics Evaluation of Innovative UHPC Pedestrian Cable Stayed Bridge

机译:创新的UHPC人行斜拉桥动力特性评估

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摘要

KICT (Korea Institute of Construction Technology) is conducting a project called "SUPER BRIDGE 200-Development of Low Cost and Long Life Hybrid Cable Stayed Bridge". This project aims to reduce the construction and maintenance costs of long-span bridges by 20% and double their lifetime through the exploitation of ultra-high performance concrete (UHPC). This paper presents the design and construction of the first pedestrian cable stayed bridge using UHPC developed by KICT. UHPC, compared to conventional concrete, has not only high compressive and tensile strengths but also high ductility. The UHPC developed at KICT is a steel fiber-reinforced cement compound presenting design compressive strength larger than 180 MPa and design tensile strength exceeding 10 MPa with water-to-binder ratio below 0.24 and admixing of 2 volume percentage of steel fiber. To show the applicability of UHPC to structures, a pedestrian cable stayed bridge (Super Bridge I) exploiting the characteristics of the developed UHPC has been planned, designed and erected at KICT. The dimension of UHPC deck is 2.7 m × 7 m as a precast segment with a typical thickness of deck of only 7 cm. However, harmful crack was observed in the deck at the time of the fabrication of the deck segments. Accordingly, new fabrication method was conceived and applied to prevent cracking of the UHPC slender deck. Four UHPC deck segments were fabricated successfully without any crack. After construction, the dynamic characteristics (natural frequencies and mode shapes) were evaluated through vibration tests since several users felt excess vibration. A vertical tuned mass damper (TMD) was proposed and installed on the parapet of the bridge. The TMD reduces the acceleration by about 30% from 0.0316 g to 0.0244 g when two pedestrians are crossing the bridge.
机译:韩国建设技术研究院(KICT)正在进行名为“ SUPER BRIDGE 200-低成本和长寿命混合斜拉桥的开发”的项目。该项目旨在通过开发超高性能混凝土(UHPC),将大跨度桥梁的建设和维护成本降低20%,并将其寿命延长一倍。本文介绍了由KICT开发的首个使用UHPC的人行斜拉桥的设计和施工。与常规混凝土相比,UHPC不仅具有较高的抗压强度和拉伸强度,而且还具有较高的延展性。由KICT开发的UHPC是一种钢纤维增强的水泥复合材料,其设计抗压强度大于180 MPa,设计抗拉强度超过10 MPa,水胶比低于0.24,并且混合了2体积百分比的钢纤维。为了显示UHPC在建筑物上的适用性,已在KICT计划,设计和架设了一座采用发达UHPC特性的人行斜拉桥(超级桥I)。 UHPC甲板的尺寸为2.7 m×7 m,作为预制段,典型的甲板厚度仅为7 cm。然而,在制造甲板节段时在甲板中观察到有害裂纹。因此,构思并应用了新的制造方法以防止UHPC细长甲板开裂。成功制造了四个UHPC甲板段,没有任何裂缝。施工后,由于一些用户感到过度振动,因此通过振动测试评估了动态特性(固有频率和振型)。提出了一种垂直调谐质量阻尼器(TMD),并将其安装在桥梁的栏杆上。当两个行人过桥时,TMD将加速度从0.0316 g降低到0.0244 g约30%。

著录项

  • 来源
    《Engineering》 |2012年第12期|869-876|共8页
  • 作者单位

    Structural Engineering Research Division, Korea Institute of Construction Technology, Goyang, South Korea;

    Structural Engineering Research Division, Korea Institute of Construction Technology, Goyang, South Korea;

    Structural Engineering Research Division, Korea Institute of Construction Technology, Goyang, South Korea;

    Structural Engineering Research Division, Korea Institute of Construction Technology, Goyang, South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    UHPC; pedestrian cable stayed bridge; dynamic characteristics test; TMD;

    机译:UHPC;行人斜拉桥;动态特性测试;TMD;
  • 入库时间 2022-08-18 01:01:05

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