石油化工应用
石油化工應用
석유화공응용
PETROCHEMICAL INDUSTRY APPLICATION
2012年
12期
10-14
,共5页
定向钻井%轨迹控制%工具面%防碰
定嚮鑽井%軌跡控製%工具麵%防踫
정향찬정%궤적공제%공구면%방팽
directional drilling%well trajectory control%downhole deflecting tool face%anticollision
在定向钻井中常常会遇到表层直井段不能打直且直并段井底井斜方位偏离目标井斜方位较远,二开定向造斜时定向井工程师一般直接朝着目标井斜方位定向,由于井眼惯性的影响使实钻轨迹不能很快贴近轨道设计方位。为了解决这个问题,在造斜点初始定向时不应按照设计方位定向,可提出科学的定向方法使实钻轨迹尽快贴近轨道设计方位,当接近目标井斜方位时再朝着目标井斜方位定向。根据“空间斜面圆弧”模型以及在直井段没有打直的情况下定向工具面的“全力扭方位”计算模型,并以BZ13—1A2井为实例,计算出定向工具面角并用landmark软件计算了各个定向工具面角对井眼轨迹控制的影响。实例计算结果表明:通过该方法,能够尽快使实钻轨迹贴近设计线,从而减小扭方位井段的长度,提高定向造斜效率和控制精度,同时减小丛式井防碰的潜在风险。
在定嚮鑽井中常常會遇到錶層直井段不能打直且直併段井底井斜方位偏離目標井斜方位較遠,二開定嚮造斜時定嚮井工程師一般直接朝著目標井斜方位定嚮,由于井眼慣性的影響使實鑽軌跡不能很快貼近軌道設計方位。為瞭解決這箇問題,在造斜點初始定嚮時不應按照設計方位定嚮,可提齣科學的定嚮方法使實鑽軌跡儘快貼近軌道設計方位,噹接近目標井斜方位時再朝著目標井斜方位定嚮。根據“空間斜麵圓弧”模型以及在直井段沒有打直的情況下定嚮工具麵的“全力扭方位”計算模型,併以BZ13—1A2井為實例,計算齣定嚮工具麵角併用landmark軟件計算瞭各箇定嚮工具麵角對井眼軌跡控製的影響。實例計算結果錶明:通過該方法,能夠儘快使實鑽軌跡貼近設計線,從而減小扭方位井段的長度,提高定嚮造斜效率和控製精度,同時減小叢式井防踫的潛在風險。
재정향찬정중상상회우도표층직정단불능타직차직병단정저정사방위편리목표정사방위교원,이개정향조사시정향정공정사일반직접조착목표정사방위정향,유우정안관성적영향사실찬궤적불능흔쾌첩근궤도설계방위。위료해결저개문제,재조사점초시정향시불응안조설계방위정향,가제출과학적정향방법사실찬궤적진쾌첩근궤도설계방위,당접근목표정사방위시재조착목표정사방위정향。근거“공간사면원호”모형이급재직정단몰유타직적정황하정향공구면적“전력뉴방위”계산모형,병이BZ13—1A2정위실례,계산출정향공구면각병용landmark연건계산료각개정향공구면각대정안궤적공제적영향。실례계산결과표명:통과해방법,능구진쾌사실찬궤적첩근설계선,종이감소뉴방위정단적장도,제고정향조사효솔화공제정도,동시감소총식정방팽적잠재풍험。
Well trajectory of the first spud is not exactly vertical in directional drilling, and the directional driller generally kicking directly toward the target azimuth at the second spud, if the vertical well's bottom hole azimuth deviation from the target azimuth greatly, thanks to wellbore's inertia ,the well trajectory can't approach to the designed line quickly. In order to resolve this problem, don't kick to the designed azimuth at the beginning of the kicking at the position of KOP ,provide scientific deflection method, which can let well trajectory approach to the designed line quickly ,and then toward the target azimuth when the real drilling azimuth is approximately equal to the target azimuth. In this paper used directional tool face " full turning" reference model base on "space slant circle" model when the vertieal well inter- val is not exactly vertical, and took BZ13-1 A2 well for example, used software calculated how the downhole directional tool face affect the trajectory control. The example's calculate result shows that: when select the appropriate tool face, the well trajectory can approach to the designed line quickly, reduce the turning well interval, improve the kicking efficiency and control accuracy- ,and reduce the potential risk of group well's collision greatly'.