首页> 外文会议>IABSE conference on engineering the developing world >HYDRID LAUNCHING GANTRY FOR THE CONSTRUCTION OF SPAN-BY-SPAN PRECAST SEGMENTAL BRIDGE
【24h】

HYDRID LAUNCHING GANTRY FOR THE CONSTRUCTION OF SPAN-BY-SPAN PRECAST SEGMENTAL BRIDGE

机译:跨跨段式桥梁建造的混合动力发射门架

获取原文

摘要

Unlike balance cantilever construction of precast segmental bridge, span-by-span construction method requires temporary shoring to support the segments before they are fully post-tensioned to a self-sustained structure. In most cases launching gantries are being used for the purpose. Launching gantries are custom made equipment fabricated according to the design requirements to overcome various site restrictions. They are made to contractor's preferences and other special specification pertinent to the specific site requirements within the budgeted cost. It can be an overhead type or an under-slung type with respective advantages and dis-advantages. In Package-A of Kelana-Jaya Line Extension project for Light Rail Transit System (LRT) in Kuala Lumpur, a set of requirements was set by the bridge designer. With these limitations, both the conventional overhead and under-slung types were not feasible to be used. A new Hybrid Launching Gantry was therefore developed to handle the precast concrete segments for the elevated bridge structure of the project. Five hybrid launching gantries were successfully used to install span-by span bridges for this Package-A. These new launching gantries were supported on the brackets, secured directly to the sides of piers. Instead of having the main truss under the precast segments as in the under-slung launching gantry case, the main truss was designed to stay above the precast segments to gain the advantages of an over-head launching gantry system. This innovative design has several distinctive advantages over other conventional type of launching gantries. This paper presents the design and development processes to meet the project requirements, complete with descriptions of technical detail of this unique equipment. The challenges of fabrication and installation are also highlighted.
机译:与预制分段式桥梁的平衡悬臂施工不同,跨跨施工方法需要临时支撑以支撑各段,然后再将这些段完全张紧到一个自持结构。在大多数情况下,发射龙门被用于此目的。发射架是根据设计要求制造的定制设备,可以克服各种场地限制。它们是根据承包商的喜好和其他与特定工地要求相关的特殊规格而制定的,且在预算之内。它可以是具有各自优点和缺点的架空式或下摆式。在吉隆坡轻轨交通系统(LRT)的Kelana-Jaya线扩展项目的Package-A中,桥梁设计师提出了一组要求。由于这些限制,常规的高架和下悬挂式都无法使用。因此,开发了一种新的混合发射龙门,以处理该项目的高架桥结构的预制混凝土节段。五个混合式发射门架已成功用于为此Package-A安装跨接跨度的桥梁。这些新的发射龙门架被支撑在支架上,直接固定在码头的两侧。不同于在下悬式龙门架情况下将主桁架置于预制段之下,而是将主桁架设计为保持在预制段上方,以获得顶置式龙门架系统的优势。与其他常规类型的发射式龙门架相比,这种创新的设计具有几个独特的优势。本文介绍了满足项目要求的设计和开发过程,并详细介绍了这种独特设备的技术细节。还突出了制造和安装方面的挑战。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号