首页> 外文会议>Joint Rail Conference >MILWAUKEE STREETCAR OVERHEAD CONTACT SYSTEM: A CHALLENGING DESIGN EFFORT
【24h】

MILWAUKEE STREETCAR OVERHEAD CONTACT SYSTEM: A CHALLENGING DESIGN EFFORT

机译:MILWAUKEE STREETCAR高架接触系统:具有挑战性的设计努力

获取原文

摘要

The new Milwaukee Streetcar system has been in the planning, design and construction phases for over 10 years and on November 2, 2018, operations with a combined overhead contact system and streetcar battery power commenced ushering in a new era of growth for the City of Milwaukee. Many challenges in the design and construction of the overhead contact line and power system were encountered during this time period including budgetary constraints, multiple pole location changes, underground obstacles, low clearance bridges, alignment changes, utility conflicts, and changing vehicle requirements. The line was originally designed for pantograph operation but soon adapted for pole/pantograph current collection and then changed back to pantograph only current collection during the final design. The original design consisted of underground feeder cables to supplement a 4/0 contact wire but eventually not utilized due to budgetary constraints. Instead, a larger 350 kcmil contact wire was used with no paralleling feeder cables. The added weight of a 350 kcmil wire with wind, ice and low temperatures created high forces in the overhead contact system (OCS) leading to challenges in pole and foundation design where compliance to the National Electrical Safety Code (NESC) was required. The OCS style originally proposed and finally constructed used an inclined pendulum suspension (IPS) system that was constant tensioned with rotating springs deemed by the installing contractor superior to balance weights. The pendulum system was chosen as it is simple, lightweight, less visually obtrusive, and more economical than other suspension systems such as stitch and steady arm that are being used on other streetcar or light rail systems. IPS has provided Milwaukee with an excellent operating overhead contact system. Buildings along the route that were not historic structures were utilized where possible for span wire attachment but in many locations long bracket arms up to 40 feet long had to be used requiring special designs to keep the size of the pipes standard with the rest of the system. Challenges arose at low bridge underpasses where the contact wire had to be below required code height and special precautions had to be undertaken. Other areas such as the St. Paul Lift Bridge proved challenging as well where special electrically interlocked OCS devices were initially designed to de-energize the overhead wires and is further discussed with the reasoning for their use. This paper outlines the phases of design, the changes to the design that occurred over time, the challenges encountered to the OCS design, the method of design, and the final disposition of the design for construction. It further outlines the construction of the system and problems encountered with poles, foundations, bracket arms, traction power substations, contact wire, feeder cables, and winter conditions affecting the integrity of these structures and how some of these problems were solved.
机译:新的密尔沃基有轨电车系统已进入规划,设计和施工阶段超过10年,2018年11月2日,结合了高架接触系统和有轨电车电池电源的运营开始为密尔沃基市开启了新的增长时代。在这段时间里,架空接触线和电力系统的设计和施工遇到了许多挑战,包括预算约束,多极位置变化,地下障碍物,低净空桥梁,路线变化,公用事业冲突以及不断变化的车辆需求。该生产线最初是设计用于受电弓操作的,但很快就适应了极/受电弓的电流收集,然后在最终设计期间又变回仅受电弓的电流收集。最初的设计由地下馈线电缆组成,以补充4/0接触线,但由于预算限制最终没有使用。取而代之的是,使用了更大的350 kcmil接触线,没有平行的馈线电缆。带有风,冰和低温的350 kcmil导线的附加重量在高架接触系统(OCS)中产生了很大的力,从而导致杆和地基设计面临挑战,需要符合美国国家电气安全规范(NESC)。最初提出并最终构造的OCS样式使用了倾斜的摆式悬挂(IPS)系统,该系统通过安装承包商认为优于平衡重的旋转弹簧不断张紧。之所以选择钟摆系统,是因为它比其他悬架系统(如在其他有轨电车或轻轨系统上使用的针脚和稳定臂)简单,轻巧,在视觉上不太引人注目并且更经济。 IPS为密尔沃基提供了出色的操作架空接触系统。沿途使用的建筑物不是历史建筑,可在可能的情况下使用跨线连接,但在许多位置,必须使用长达40英尺长的长支架臂,这需要特殊设计以使管道尺寸与系统的其余部分保持标准。在低桥地下通道上提出了挑战,在这种情况下,接触线必须低于要求的编码高度,并且必须采取特殊的预防措施。在其他领域,例如圣保罗吊桥,也被证明具有挑战性,在最初设计特殊的电气互锁OCS设备以使架空线断电的情况下,将进一步讨论其使用理由。本文概述了设计的各个阶段,随着时间推移发生的设计变更,OCS设计遇到的挑战,设计方法以及施工设计的最终配置。它进一步概述了系统的结构以及电线杆,地基,支架臂,牵引式变电站,接触线,馈电线和冬季条件(这些条件会影响这些结构的完整性)以及如何解决其中的某些问题。

著录项

  • 来源
    《Joint Rail Conference 》|2019年|V001T09A004.1-V001T09A004.15|共15页
  • 会议地点 Snowbird(US)
  • 作者

    Paul F. White; Gerti Kola;

  • 作者单位

    HNTB Corporation Chelmsford MA USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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