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    • 1. 发明授权
    • Downhole sampling tool and method for using same
    • 井下采样工具及其使用方法
    • US07703517B2
    • 2010-04-27
    • US12277664
    • 2008-11-25
    • Jeffrey A. TarvinJulian J. PopSimon H. BittlestonAngus J. MelbourneRogerio T. Ramos
    • Jeffrey A. TarvinJulian J. PopSimon H. BittlestonAngus J. MelbourneRogerio T. Ramos
    • E21B49/10
    • E21B49/10
    • Methods and apparatuses for sampling fluid from a subterranean formation penetrated by a wellbore are provided. The subterranean formation has clean formation fluid therein, and the wellbore has a contaminated fluid therein extending into an invaded zone about the wellbore. A shaft is extended from a housing and positioned in a perforation in a sidewall of the wellbore. At least one flowline extends through the shaft and into the housing. The flowline(s) are adapted to receive downhole fluids through the perforation. At least one fluid restrictor, such as a packer, injection fluid or flow inhibitor, may be used to isolate at least a portion of the perforation whereby contaminated fluid is prevented from entering the isolated portion of the perforation. At least one pump selectively draws fluid into the flowline(s).
    • 提供了用于从井眼渗透的地层中取样流体的方法和装置。 地层在其中具有清洁的地层流体,并且井筒中的污染流体延伸到围绕井筒的侵入区域中。 轴从壳体延伸并且定位在井眼的侧壁中的穿孔中。 至少一条流线穿过轴延伸到壳体中。 流线适于通过穿孔接收井下流体。 可以使用至少一个流体限制器,例如封隔器,注射流体或阻流剂来隔离穿孔的至少一部分,从而防止被污染的流体进入穿孔的隔离部分。 至少一个泵选择性地将流体吸入流线。
    • 3. 发明授权
    • Downhole sampling tool and method for using same
    • 井下采样工具及其使用方法
    • US07469746B2
    • 2008-12-30
    • US12023605
    • 2008-01-31
    • Jeffrey A. TarvinJulian J. PopSimon H. BittlestonAngus J. MelbourneRogerio T. Ramos
    • Jeffrey A. TarvinJulian J. PopSimon H. BittlestonAngus J. MelbourneRogerio T. Ramos
    • E21B49/10
    • E21B49/10
    • Methods and apparatuses for sampling fluid from a subterranean formation penetrated by a wellbore are provided. The subterranean formation has clean formation fluid therein, and the wellbore has a contaminated fluid therein extending into an invaded zone about the wellbore. A shaft is extended from a housing and positioned in a perforation in a sidewall of the wellbore. At least one flowline extends through the shaft and into the housing. The flowline(s) are adapted to receive downhole fluids through the perforation. At least one fluid restrictor, such as a packer, injection fluid or flow inhibitor, may be used to isolate at least a portion of the perforation whereby contaminated fluid is prevented from entering the isolated portion of the perforation. At least one pump selectively draws fluid into the flowline(s).
    • 提供了用于从井眼渗透的地层中取样流体的方法和装置。 地层在其中具有清洁的地层流体,并且井筒中的污染流体延伸到围绕井筒的侵入区域中。 轴从壳体延伸并且定位在井眼的侧壁中的穿孔中。 至少一条流线穿过轴延伸到壳体中。 流线适于通过穿孔接收井下流体。 可以使用至少一个流体限制器,例如封隔器,注射流体或阻流剂来隔离穿孔的至少一部分,从而防止被污染的流体进入穿孔的隔离部分。 至少一个泵选择性地将流体吸入流线。
    • 10. 发明授权
    • Method of cleaning a well bore prior to a cementing operation
    • 在固井操作之前清洁井眼的方法
    • US5284207A
    • 1994-02-08
    • US882778
    • 1992-05-14
    • Simon H. BittlestonAndrew HuntMostafa A. Tehrani
    • Simon H. BittlestonAndrew HuntMostafa A. Tehrani
    • C09K8/528E21B21/14E21B33/14E21B33/16E21B37/00
    • E21B21/14C09K8/528E21B33/14Y10S507/928
    • Once the drilling of an oil or gas well is finished the bore must be cased and cemented. It is important that the cement lining be complete, and to ensure this it is necessary to sweep out the mud in the annulus ahead of the rising cement. Unfortunately, this often proves difficult, and various procedures and mechanisms have been devised in the past to improve the chances of achieving efficient mud-removal and forming a complete cement lining, though none have been truly successful. One of the techniques presently employed involves the utilization of a wash, but it has been noted that such a wash, even when turbulent, has very little component of its movement in the annulus in a direction other than up along the annulus, and that as a result it has very little effect on gelled mud deposits, especially those in the small casing/bore inter-distance of a severely eccentric casing. It has now been discovered that a considerably increased amount of lateral motion, and thus a very significantly enhanced degree of mud removal capability, is provided if the liquid be a multiphase liquid in which one of the phases is a gas--in other words, if the liquid be full of bubbles--and the invention provides a cleaning method particularly suitable for the cleaning of gelled mud deposits off the casing and bore walls of an oil/gas well prior to cementing the casing in place, in which there is caused to flow over and in contact with the dirty surface a "burbulent" liquid.
    • 一旦油井或气井的钻探完成,钻孔必须被套管并粘结。 重要的是,水泥衬里是完整的,并且为了确保这样做,必须清除上升水泥前面的环空中的泥浆。 不幸的是,这往往证明是困难的,过去已经设计了各种程序和机制,以提高实现高效除泥和形成完整水泥衬里的机会,尽管没有一个确实取得成功。 目前使用的技术之一涉及洗涤的利用,但是已经注意到,即使是湍流,这种洗涤在环形空间中沿着环形物沿着除了向上的方向的运动的非常小的分量也是如此 结果对凝胶泥沉积物的影响非常小,特别是严重偏心套管的小套管/孔间距的影响。 现在已经发现,如果液体是其中一个相是气体的多相液体,则提供显着增加的横向运动量,并且因此非常显着地提高泥浆去除能力的程度,换句话说,如果 液体充满气泡,本发明提供了一种清洁方法,特别适用于在将套管固定在适当位置之前,将套管和油/气井的孔壁清除凝胶泥浆沉积物,其中流动 并且与脏表面接触一个“湍流”液体。