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Model fire tests on a beam-to-leg connection in an offshore platform topside

机译:在海上平台顶侧的梁到腿连接上进行模型火灾测试

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Beam-to-column connections are of great significance as they noticeably influence the mechanical behavior of structures at ambient and elevated temperatures. Observations from full-scale fire tests confirm that connections play an important role on the resistance time of structural components in fire. Because of the high cost of elevated temperature tests, adequate experimental data on a broad range of connections are not available. One type of such connections is the Ⅰ-beam-to-circular tubular leg connections in offshore oil/gas platform topsides. Considering the high risk of fire events in offshore oil/gas platforms, our study focuses on the structural behavior of this type of connection at elevated temperatures. Eleven small-scale experimental tests were conducted on a uniplanar welded steel Ⅰ-beam-to-tubular chord connection with external diaphragms to investigate their fire resistance capacity. Local strengthening and partial thermal insulating were separately introduced to the connection components. The results show that the external diaphragms play a considerably more important role on the connection fire response as compared with that for the vertical stiffeners. It is also found that the degradations in the connections' stiffness at elevated temperature might be closely correlated with the classical thermomechanical data on steel material.
机译:梁到柱的连接非常重要,因为它们会明显影响结构在室温和高温下的机械性能。全面火灾测试的观察结果证实,连接在火灾中对结构部件的抵抗时间起着重要作用。由于高温测试的成本高昂,因此无法获得有关各种连接的足够实验数据。这种连接的一种类型是海上油气平台顶部的Ⅰ型梁到圆形管状支腿连接。考虑到海上石油/天然气平台发生火灾的高风险,我们的研究重点是这种类型的连接在高温下的结构行为。在单平面焊接的钢Ⅰ型钢对空心弦连接的外部隔板上进行了11项小型试验,以研究其耐火性能。局部加固和部分绝热分别引入连接组件。结果表明,与垂直加强筋相比,外部隔板在连接火灾响应中起着更为重要的作用。还发现,高温下接头刚度的降低可能与钢材的经典热力学数据密切相关。

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