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Evaluating Welded and Mechanical Pipe Joint Strength for Seismic Design: Part 1-Testing Protocol

机译:评估焊接和机械管接头强度的地震设计:第1部分 - 检测协议

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The evaluation of welded steel pipe and pipe joint strength for resisting seismic forces is essential to establishing the design basis for today's conveyance infrastructure. Unfortunately, little information is available for large diameter, thin wall, spiral welded steel pipe which is commonly used in the water and wastewater industry. As a result, pipeline designers will often use information tailored to other industries such as steel buildings and off-shore drilling structures which may not be relevant to welded steel water pipe and the use of this information could lead to unconservative results with questionable seismic resilience. The effects of internal pressure are known to augment the strength of welded steel pipe and joints however accurate test data suitable for design use is currently unavailable. This paper describes a planned testing program that will include physical tests to evaluate the strength of welded steel pipe, field welded joints, and mechanical joints under pressurized and non-pressurized conditions. The goal is to develop an understanding of how typical, large diameter steel pipe will perform when subjected to bending, tension, and compressive forces which are the basis of seismic resilience.
机译:用于抵抗地震力的焊接钢管和管接头强度的评估对于建立当今运输基础设施的设计基础是必不可少的。不幸的是,很少的信息适用于大直径,薄壁,螺旋焊接钢管,常用于水和废水行业。因此,管道设计人员通常会使用对其他行业量身定制的信息,例如钢制建筑物和离岸钻井结构,这可能与焊接钢水管道不相关,并且这些信息的使用可能导致难以置信的抗震性恢复能力。已知内部压力的影响增加焊接钢管和接头的强度,但是适合设计使用的准确测试数据目前无法使用。本文介绍了计划的测试程序,包括物理测试,以评估焊接钢管,焊接接头和机械接头在加压和非加压条件下的强度。目标是在经受弯曲,张力和压缩力的基础上进行诸如抗震性弹性基础的弯曲,张力和压缩力时,了解对典型的大直径钢管的理解。

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