導(dǎo)航:全球石油化工網(wǎng) >> 資訊頻道 >> 技術(shù)裝備

泡沫包裹新技術(shù)防止海上套管發(fā)生故障(英)

[加入收藏][字號: ] [時間:2009-01-12 JPT 關(guān)注度:0]
摘要:簡介:最近,瑞典技術(shù)公司Swelleborg AB Group推出了可用于高溫高壓環(huán)境下的泡沫包裹新技術(shù),通過應(yīng)用此技術(shù),可以防止海上油井套管由于環(huán)空壓力恢復(fù)發(fā)生故障。 Swedish technology company Swell...
簡介:最近,瑞典技術(shù)公司Swelleborg AB Group推出了可用于高溫高壓環(huán)境下的泡沫包裹新技術(shù),通過應(yīng)用此技術(shù),可以防止海上油井套管由于環(huán)空壓力恢復(fù)發(fā)生故障。 

Swedish technology company Swelleborg AB Group recently announced a new high-temperature, high-pressure crushable foam wrap (CFW) technology for mitigating subsea well casing failure. The company’s Trelleborg CRP division says that the technology known as CFW+ incorporates 3M’s Glass Bubbles product to prevent casing failure due to annular pressure buildup or trapped annular pressure. 


Trelleborg’s CFW technology, which was originally introduced to the market in the early 1990s, is a polymeric foam material with a honeycomb microstructure designed to disperse annular fluid pressure increases during production. The product is installed around the inner drillstring casing, which is subsequently immersed in the annulus fluid. 

During production of hot hydrocarbon, the fluid in the sealed annuli is denied thermal expansion, resulting in an increase in annular pressure which may lead to eventual rupture of the outer casing of the annuli. In extreme cases, this can lead to leaking of fluid or complete collapse of the inner casing, which will restrict or completely stop production. 

CFW helps prevent this scenario by collapsing at a predetermined pressure/temperature combination, thus allowing the annulus fluid to expand and dispersing any pressure increases. The polymeric nature of the foam gives it a thermal softening point that is formulated to be below the maximum operating temperature of the annulus, which ensures that the foam will not fail to collapse before the maximum operating temperature is reached. 

CFW is available as quarter cylinders, typically 1 m in length, and are installed on the inner drill casing in opposing pairs using a high-performance adhesive. The number of quadrant pairs installed is dictated by the collapse volume required within the annulus, which is defined as the calculated volume increase of the annulus fluid during thermal expansion between the installation temperature and the operating temperature. 

The total volume of foam required for a particular job is calculated using this collapse volume and the crush percentage, which is the volume percentage of foam available for compression. Crush percentage is defined as the amount of compression under isostatic load that the foam will allow over the collapse pressure band?typically 30?50%?depending on the particular foam formulation. 

The total volume of foam actually installed is typically increased by 20% of that calculated from the collapse volume and crush percentage to cover any losses during installation or deployment and to provide a safety factor in the event that fluid expansion exceeds the calculated amount. 

“Until now, the operating range of our CFW solution has had typical performance in excess of 4,000 psi at 60?80ºC, which has been sufficient to meet the needs of most projects,” said Guy Downie, Manager of the Subsea Group for Trelleborg CRP. “However, due to trends in drilling more complex wells, sometimes much deeper and further offshore, we have developed CFW+ which can provide an annular pressure buildup solution for these more demanding situations to temperatures in excess of 110ºC and much greater pressures.” 

The incorporation of 3M’s Glass Bubbles technology, which are hollow, low-density, low-viscosity glass beads, provide increased strength and chemical inertness to the substrates to which they are added. In the CFW+ foam, the Glass Bubbles technology increases resistance to water absorption, which increases the foam lifetime downhole before utilization. 

Downie pointed to this new formulation’s ability to match the required collapse volume and pressure collapse range for more demanding deep subsea wells, and said, “This is the only commercially available solution to operate on temperature and pressure triggers, rather than just pressure alone.” 

Trelleborg aims to introduce this new technology to drilling operations in the coming year, and projects potential use in over 100 field developments worldwide between 2009 and 2011.
關(guān)鍵字: 套管 
關(guān)于我們 | 會員服務(wù) | 電子樣本 | 郵件營銷 | 網(wǎng)站地圖 | 誠聘英才 | 意見反饋
Copyright @ 2011 www.tolkopozitiv.com Inc All Rights Reserved 全球石油化工網(wǎng) 版權(quán)所有 京ICP證080561號
主站蜘蛛池模板: 真实的国产乱xxxx在线| 色哟哟在线网站| 女人张开腿无遮无挡图| 九九全国免费视频| 粗大挺进尤物人妻中文字幕| 国产高清乱理论片在线看| 中韩高清无专码区2021曰| 欧美日韩a级片| 无人在线观看视频高清视频8| 亚洲视频在线观看地址| 麻豆精品一区二区综合av| 在线日韩理论午夜中文电影| 久久久精品久久久久久96| 欧美综合激情网| 四影虎影ww4hu32海外网页版| 69网站在线观看| 性色av闺蜜一区二区三区| 九九久久国产精品免费热6| 电车痴汉在线观看| 国产剧情麻豆剧果冻传媒视频免费| a级毛片免费完整视频| 熟妇人妻不卡中文字幕| 国产美女视频免费看网站| 久久久亚洲欧洲日产国码aⅴ| 欧美性猛交xxxx乱大交蜜桃| 国产剧果冻传媒星空在线播放| AV无码久久久久不卡网站下载| 放荡女同老师和女同学生| 免费看又爽又黄禁片视频1000| 窝窝午夜色视频国产精品东北 | 国产精品久久久久影院| 久久天天躁狠狠躁夜夜网站| 波多野结衣乱码中文字幕| 国产成人久久777777| 一区二区三区免费看| 欧美成人午夜视频| 国产三级小视频| 91最新地址永久入口| 忍者刺客在线观看完整中文免费版| 亚洲毛片一级带毛片基地| 精品丝袜国产自在线拍亚洲|