首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >QUALIFICATION TESTING OF TITANIUM STRESS JOINTS DESIGNED FOR GALVANIC HYDROGEN MITIGATION CONVEYING HOT, SOUR WELL FLUIDS
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QUALIFICATION TESTING OF TITANIUM STRESS JOINTS DESIGNED FOR GALVANIC HYDROGEN MITIGATION CONVEYING HOT, SOUR WELL FLUIDS

机译:设计用于流化氢,酸性井液的电化氢缓和钛应力接头的定性测试

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A three-phase laboratory test qualification program for Titanium Stress Joint (TSJ) use in an offshore steel catenary riser (SCR) system handling hot, marginally sour well brine fluid offers guidance for expanded, safe TSJ use in hot sour well service. Phase 1 results indicated a reasonable concern and risk for long-term excessive hydrogen uptake and damage to the TSJ when directly coupled with the steel riser and steel topside piping. An alternative TSJ design, incorporating an Alloy 625 cathode buffer transition between adjoining steel tubulars, was proposed for mitigation of galvanic hydrogen charging uptake and damage prevention for hot sour fluid service. This "Tri-Metal couple" design was modeled in Phase 2 using polarization curves as input, and simulations projected insignificant hydrogen charging on TSJ bore surfaces exposed to "Worst-Case Sour" brine fluid at 250℉ (121°C). Phase 3 aimed at qualifying the TSJ welds for even more severe and acidic sour well fluid service conditions up to 275℉ (135°C), via fatigue crack growth rate (FCGR) and J-R fracture toughness testing of weld metal, and S-N fatigue and slow strain rate (SSR) tensile testing of cross-welds. These tests confirmed the high degree of hot sour environmental resistance for Grade 29 Titanium welded joints, and reasonable compatibility with TSJ design requirements.
机译:一项针对在高温,少量酸井盐水中使用的海上钢悬链提升管(SCR)系统中使用的钛应力接头(TSJ)的三相实验室测试鉴定计划,为在热酸井服务中扩展,安全地使用TSJ提供了指导。第1阶段的结果表明,与钢制立管和钢顶侧管道直接连接时,长期过度吸收氢气和损坏TSJ会引起合理的关注和风险。提出了另一种TSJ设计,该设计在相邻的钢管之间结合了625合金阴极缓冲过渡层,以减轻电酸氢电荷的吸收并防止热酸液的损坏。这种“三金属耦合”设计是在阶段2中使用极化曲线作为输入建模的,并且模拟预测在暴露于250°C(121°C)的“最坏案例”盐水的TSJ钻孔表面上的氢电荷微不足道。第三阶段旨在通过疲劳裂纹扩展率(FCGR)和JR金属对焊接金属的断裂韧性测试以及SN疲劳和交叉焊缝的慢应变速率(SSR)拉伸测试。这些测试证实了29级钛合金焊接接头具有很高的耐热酸耐环境性,并且与TSJ设计要求具有合理的兼容性。

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