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Design of Industrial Pipe Racks Using Modules, Pre-Assembled Units, and Stick-Built Construction

机译:使用模块,预装单位和粘贴式施工设计工业管架的设计

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Pipe racks are important structures in industrial plants. They are used within or to connect operating units, or longer distance for plant extension operations. For a large industrial facility, it can be feasible to utilize combined construction methods -modules, pre-assembled units (PAUs) and/or stick-built construction at job site - to fit site conditions, logistics, and construction schedule. Engineering design of pipe racks varies depending on specific construction methods selected, logistical and feasibility study results, constructability, piping routing, and layout of process units. Structural framing layout, selection of member sizes and connection types directly affect material selection, construction, cost, and schedule. In addition to the consideration of operating (product contents, thermal expansion and anchor loads) and environmental loads (wind and seismic), the design of pipe rack modules requires the consideration of sequencing during shipping (by barge/ship or truck), and self propelled modular transporters (SPMTs), and installation (by crane or SPMT) that associate with different design loads, load combinations and load paths. The purpose of this paper is to present the unique design considerations of framing layouts, member connections, and related structural analysis using different construction methods in new and existing facilities. Design considerations including transfer forces, camber, SPMT supports, temporary members, lifting details, member splices, brace connections and column base connections are also discussed and presented.
机译:管架是工业厂房的重要结构。它们在内部使用或连接操作单元,或更长的工厂扩展操作距离。对于大型工业设施,利用联合施工方法 - 常规,预装单位(PAU)和/或在工作场所的贴纸建筑施工中可以是可行的 - 以适应场地条件,物流和施工时间表。管道架的工程设计根据所选的特定施工方法,后勤和可行性研究结果,结构,管道路由和工艺单位布局的特定施工方法而变化。结构框架布局,成员尺寸和连接类型的选择直接影响材料选择,施工,成本和时间表。除了考虑运营(产品内容,热膨胀和锚载)和环境负荷(风和地震)外,管道架模块的设计需要考虑运输期间测序(通过驳船/船舶或卡车)和自我推进模块化运输仪(SPMT),安装(按起重机或SPMT),可与不同的设计负载,负载组合和负载路径相关联。本文的目的是在新的和现有设施中使用不同的施工方法展示框架布局,成员连接和相关结构分析的独特设计考虑因素。还讨论和介绍了设计考虑因素,包括转移力,Camber,SPMT支持,临时成员,提升细节,成员拼接,支架连接和列基础连接。

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