首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >ULTRA HEAVY WALL LINEPIPE X65 FOR THE MOST STRINGENT APPLICATIONS: METALLURGICAL DESIGN AND INDUSTRIAL DEVELOPMENT
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ULTRA HEAVY WALL LINEPIPE X65 FOR THE MOST STRINGENT APPLICATIONS: METALLURGICAL DESIGN AND INDUSTRIAL DEVELOPMENT

机译:超重型壁线管X65最主要的应用:冶金设计和工业发展

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Offshore industry has evolved to meet numerous challenges, e.g. deep water, high currents, high pressure and high temperature (HPHT), and sour reservoirs, facing deepwater exploration.The trend in flowline specifications for deepwater offshore fields is a consequence of complex oil-gas field conditions, such as HPHT and developments in design criteria (i.e. limit state design), welding and laying technologies. The technological evolution exhibits a trend towards an increasing wall thickness (WT) to provide sufficient resistance for the very high operating pressures.Furthermore, the pipelay operations, especially when linepipes are installed by means of the reel laying method, cause repeated plastic bending and straightening deformation cycles. These cyclic loads affect final material stress-strain properties.Reeling is currently applied to an increasing range of pipe geometries, being the present limit given by pipes with 16" outer diameter (OD) and 30 mm wall thickness (WT). Other pipeline installation techniques, for example, J-lay, S-lay and steep S-lay also introduce plastic strain. All previous factors mentioned before and adding one more variable when exploring and producing in regions alike to the Artie where low temperatures implied several material challenges calls for high performance seamless pipes tailored to the specific application required by the oil and gas industry. In this paper, a description is given of the results of latest fundamental studies on high-strength heavy-wall steel materials manufactured by Q&T processing.This work is part of an on-going development program on high performance heavy wall seamless pipes for special applications such as HPHT, low temperature design criteria, sour requirements and studying the material under the strain based design criteria involving metallurgical modeling, laboratory tests, industrial trials and advanced metallographic examinations. The most recent findings and overall conclusions are reported hereafter, these results have been exploited by Tenaris to manufacture a limited production seamless pipes in a wall thickness range from 40 mm to 48 mm in steel grade X65 Sour Service.
机译:离岸工业已经发展为应对众多挑战,例如深水,大电流,高压和高温(HPHT)和酸性储层,面临着深水勘探。 深水近海油田流线规格的趋势是复杂的油气田条件的结果,例如HPHT和设计标准(即极限状态设计),焊接和铺设技术的发展。技术的发展呈现出增加壁厚(WT)的趋势,以为非常高的工作压力提供足够的阻力。 此外,管道铺设操作,尤其是在通过卷盘铺设方法安装管线的情况下,会导致重复的塑性弯曲和矫直变形周期。这些循环载荷会影响最终的材料应力应变特性。 卷取目前已应用于越来越多的管道几何形状,这是外径为16“外径(OD)和壁厚为30 mm(WT)的管道所给出的当前极限。其他管道安装技术,例如J-lay,S-铺设和陡峭的S铺设还会引入塑性应变,以前提到的所有先前因素以及在Artie等地区进行勘探和生产时增加了另一个变量,Artie的低温意味着多种材料挑战,因此需要针对所需特定应用量身定制的高性能无缝管本文介绍了通过Q&T加工制造的高强度厚壁钢材的最新基础研究结果。 这项工作是针对特殊应用(例如HPHT,低温设计标准,含硫要求)的高性能厚壁无缝管正在进行的开发计划的一部分,并根据基于应变的设计标准对材料进行了研究,涉及冶金建模,实验室测试,工业试验和高级金相检查。下文中将报告最新发现和总体结论,Tenaris已利用这些结果在X65 Sour Service钢级中生产了壁厚范围为40 mm至48 mm的限量生产无缝管。

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