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Design Consideration for the Erection of Heavy Wall and Large Diameter Pressure Vessels

机译:重型墙壁和大直径压力容器的设计考虑因素

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Heavy wall reactors and large diameter pressure vessels usually face unique challenges in their erection onto their foundations at the jobsite. Today, 800 ton to 1,500 ton reactors and or large diameter vessels with diameters ranging up to 15 meters are common in the refining industry. These pressure vessels are usually fabricated in shops dispersed globally and require unique heavy duty equipment for their safe handling, transportation and erection. The challenge is to find a safe, efficient and cost effective solution based upon the limitations of the equipment, job site and the lift equipment available for erection. Equipment for the handling heavy reactors and large diameter pressure equipment is usually scarce, expensive. Planning well in advance of the lift date is required. Careful consideration must be given to the choice and design of attachment to the pressure vessels used for the lift to ensure that the vessel and lifting components are not overstressed during the lifting process. This paper identifies the types of evaluations that must be performed to determine the stresses in the vessel and lifting attachments during the lifting. The paper also discusses different types of lifting lugs that may be attached to each end of the vessel either by bolting or welding and discusses the pros and cons of each. The paper also provides an example of a finite element analysis (FEA) of a top nozzle, a FEA of a pair of lifting trunions and a FEA of welded on lifting lugs for buried pipe. The intent of the paper is to outline the effects on the vessel due to different types of lifting configurations in combination with the lifting parameters. This paper is not intended to provide guidance on how to design lifting lugs.
机译:重型壁反应堆和大直径压力容器通常面临着勃起的勃起在其基础上的独特挑战。今天,炼油行业,今日800吨至1,500吨的反应堆和直径直径长达15米的大直径容器。这些压力容器通常在全球分散的商店中制造,并且需要独特的重型设备,以便他们的安全处理,运输和勃起。挑战是基于设备,工作现场和升降设备可供勃起的局限性找到安全,高效且具有成本效益的解决方案。处理重物和大直径压力设备的设备通常稀缺,昂贵。需要在提升日期之前规划。必须仔细考虑与用于电梯的压力容器的附件的选择和设计,以确保在提升过程中不接受血管和提升部件。本文识别必须执行的评估类型,以确定船舶中的应力和提升期间提升附件。本文还讨论了不同类型的可通过螺栓或焊接和讨论的每个的利弊或者被附接到所述容器的每个端部吊耳。本文还提供了顶部喷嘴的有限元分析(FEA)的示例,这对一个升降凸起的一个升降垂直的FEA和焊接凸耳的FEA。本文的目的是概述由于不同类型的提升配置以及升降参数而导致的血管的影响。本文并非旨在为如何设计提升凸耳提供指导。

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