石油钻采工艺
石油鑽採工藝
석유찬채공예
OIL DRILLING & PRODUCTION TECHNOLOGY
2014年
4期
38-42
,共5页
周洪林%李胜杰%董静辉%李炼民%唐庆%赵虎
週洪林%李勝傑%董靜輝%李煉民%唐慶%趙虎
주홍림%리성걸%동정휘%리련민%당경%조호
超深井%长水平段%轨迹控制%钻具弯曲
超深井%長水平段%軌跡控製%鑽具彎麯
초심정%장수평단%궤적공제%찬구만곡
ultra-deep well%long horizontal section%trajectory control%drilling tool bending
塔里木油田中古5区块储层较深,钻井液安全密度窗口窄,受井眼直径、钻具弯曲等因素综合影响,水平井段的长度延伸一直较难突破,影响了水平井产能开发,为提高中古潜山灰岩裂缝油气藏单井产量,开展了超深长水平段井井眼轨迹研究,针对井眼清洁、钻具弯曲、螺杆脱胶、轨迹控制等施工难点,现场实施中应用了?101.6 mm 钻杆组合、钻具弯曲模拟、安全钻压、水力振荡器、高温螺杆、高温 MWD、优选 PDC 钻头结合控压钻井技术,钻成国内高难度、高温超深长水平段水平井,该井超长井眼顺利钻完,并在水平段实施了分段多级压裂增产措施,探索出了超深、高难度、长水平段井的轨迹控制新方法,该研究及应用的成果对此地区水平井大规模实施具有一定的指导意义。
塔裏木油田中古5區塊儲層較深,鑽井液安全密度窗口窄,受井眼直徑、鑽具彎麯等因素綜閤影響,水平井段的長度延伸一直較難突破,影響瞭水平井產能開髮,為提高中古潛山灰巖裂縫油氣藏單井產量,開展瞭超深長水平段井井眼軌跡研究,針對井眼清潔、鑽具彎麯、螺桿脫膠、軌跡控製等施工難點,現場實施中應用瞭?101.6 mm 鑽桿組閤、鑽具彎麯模擬、安全鑽壓、水力振盪器、高溫螺桿、高溫 MWD、優選 PDC 鑽頭結閤控壓鑽井技術,鑽成國內高難度、高溫超深長水平段水平井,該井超長井眼順利鑽完,併在水平段實施瞭分段多級壓裂增產措施,探索齣瞭超深、高難度、長水平段井的軌跡控製新方法,該研究及應用的成果對此地區水平井大規模實施具有一定的指導意義。
탑리목유전중고5구괴저층교심,찬정액안전밀도창구착,수정안직경、찬구만곡등인소종합영향,수평정단적장도연신일직교난돌파,영향료수평정산능개발,위제고중고잠산회암렬봉유기장단정산량,개전료초심장수평단정정안궤적연구,침대정안청길、찬구만곡、라간탈효、궤적공제등시공난점,현장실시중응용료?101.6 mm 찬간조합、찬구만곡모의、안전찬압、수력진탕기、고온라간、고온 MWD、우선 PDC 찬두결합공압찬정기술,찬성국내고난도、고온초심장수평단수평정,해정초장정안순리찬완,병재수평단실시료분단다급압렬증산조시,탐색출료초심、고난도、장수평단정적궤적공제신방법,해연구급응용적성과대차지구수평정대규모실시구유일정적지도의의。
Zhonggu No. 5 Block of Tarim Oilfield is characterized by deep reservoirs and narrow safe density window of drilling fluid. Being comprehensively affected by factors like wellbore diameter, drilling tool bending, etc., there is hardly any breakthrough in elongation of the horizontal section, which affects the productivity of horizontal wells. In order to improve the production of individual wells in fractured gas pools in Zhonggu buried hill limestone, studies were made on trajectory of ultra-deep long horizontal hole. In view of the difficulties in hole cleaning, drill-string bending, screw degumming, trajectory control, etc., the ?101.6 mm drill-pipe assembly, drilling tool bending simulation, safe weight on bit, hydraulic oscillator, high-temperature screw, high temperature MWD, optimized PDC drill bit together with controlled pressure drilling technology, etc. were used to drill the highly difficult, high temperature horizontal well with ultra-deep long horizontal section. The successful drilling of this super-long hole and staged fracturing in this horizontal section has provided a new method for trajectory control in ultra-deep, highly difficult and long horizontal holes. The research and its findings have some guiding significance in large scale drilling of horizontal wells in this region.