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首页> 外文期刊>Journal of Petroleum Science & Engineering >Research and development of compressible foam for pressure management in casing annulus of deepwater wells
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Research and development of compressible foam for pressure management in casing annulus of deepwater wells

机译:深水井外壳压力管理压缩泡沫的研究与开发

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Casing annulus pressure build-up owing to fluid thermal expansion in sealed annuli severely threaten the casing safety and wellbore integrity of deepwater wells. To mitigate the annular pressure with stronger effect and lower cost, a new type of syntactic foam with high compression ratio, which consists of hollow glass microspheres and a resin matrix system, was developed in this study. It can provide extra space for the annular fluid to expand when the annular pressure exceeds the specific foam crush pressure, allowing the foam to collapse and consequently, mitigate the annular pressure. The foam compression behavior is divided into three stages according to a hydrostatic compression test, and the annular pressure is mainly influenced by the microspheres volume and temperature. To optimize the parameters of the compressible foam, a novel model considering fluid thermal expansion, casing elastic deformation, and foam compression behavior in multi-annuli is established. The results indicate that the compressible foam can reduce the trapped annular pressure effectively and permanently. In a case study well, the annular pressure no longer exceeds the maximum acceptable annular pressure in each annulus with optimized design of the foam wraps and a suitable number of installed foam casing joints.
机译:由于密封的云中的流体热膨胀,套管环形压力累积严重威胁到深水井的套管安全性和井筒完整性。为了减轻效果较强和更低的成本,在本研究中开发了一种具有高压缩比具有高压缩比的新型句法泡沫和树脂基质系统。当环形压力超过特定泡沫挤压压力时,它可以为环形流体提供额外的空间,以使泡沫塌陷并因此减轻环形压力。根据静水压缩试验,泡沫压缩行为分为三个阶段,环形压力主要受微球体积和温度的影响。为了优化可压缩泡沫的参数,建立了考虑流体热膨胀,套管弹性变形和多元植物中的套管弹性变形和泡沫压缩行为的新型模型。结果表明,可压缩泡沫可以有效地和永久地降低捕获的环形压力。在壳体研究中,环形压力不再超过每个环中的最大可接受的环形压力,通过泡沫包装的优化设计和合适的安装泡沫套管接头。

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