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Autoclave design for high pressure-high temperature corrosion studies

机译:用于高压-高温腐蚀研究的高压釜设计

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Purpose - The purpose of this paper is to develop an autoclave that can be used to assess corrosion behaviour of suitable material in high-pressure-high-temperature (HPHT) environments. Many new discoveries of oil and gas field are in HPHT environments. The development of such fields requires appropriate selection of materials that are able to withstand not just the service loads but also corrosive production fluids in the HPHT environment. Design/methodology/approach - The exposure of material samples to elevated pressure and temperature is usually done using an autoclave. The suitability of an existing autoclave for HPHT corrosion studies is provided together with suggestions on necessary design modifications. An alternative design of the autoclave is proposed based on functionality requirements and life cycle cost assessment Findings - It is concluded that the existing autoclave was unsuitable for HPHT corrosion tests, and modifications were very expensive to implement and/or not foolproof. A new autoclave was designed, manufactured, tested and successfully used to study the effect of aqueous solution on the corrosion of a pipe subject to a combination of axial tension, internal pressure and elevated temperature. Research limitations/implications - The maximum design pressure of 15 MPa is more than sufficient for high-pressure corrosion studies in aqueous solution where partial pressure of the dissolved gas is one of the main controlling parameters. However, the design pressure is only suitable for corrosion studies in a seawater environment of up to 1,500 m water depth. Originality/value - A new design of autoclave together with all the necessary piping, assembly and control system is proposed for HPHT corrosion studies. The autoclave can be used as standalone or integrated with a mechanical testing machine and thus enables corrosion studies under a wide range of loading.
机译:目的-本文的目的是开发一种高压釜,该高压釜可用于评估合适的材料在高压高温(HPHT)环境中的腐蚀行为。 HPHT环境中有许多油气田的新发现。这些领域的发展要求适当选择能够承受HPHT环境中不仅服务负荷而且还能够承受腐蚀性生产流体的材料。设计/方法/方法-通常使用高压釜将材料样品暴露于高压和高温下。提供了现有高压釜对HPHT腐蚀研究的适用性,并提供了必要的设计修改建议。根据功能性要求和生命周期成本评估,提出了高压釜的替代设计。结论-结论是,现有高压釜不适合进行HPHT腐蚀测试,并且改造成本高昂且/或不安全。设计,制造,测试并成功使用了一种新的高压釜,以研究水溶液在轴向张力,内部压力和高温共同作用下对管道腐蚀的影响。研究的局限性/意义-15 MPa的最大设计压力已经足够用于水溶液中的高压腐蚀研究,在该研究中,溶解气体的分压是主要控制参数之一。但是,设计压力仅适用于水深达1,500 m的海水环境中的腐蚀研究。原创性/价值-高压釜的新设计以及所有必要的管道,组件和控制系统被提议用于HPHT腐蚀研究。高压釜可以单独使用,也可以与机械测试机集成在一起使用,因此可以在各种载荷下进行腐蚀研究。

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