石油钻采工艺
石油鑽採工藝
석유찬채공예
OIL DRILLING & PRODUCTION TECHNOLOGY
2014年
6期
24-27
,共4页
非常规油气田%长水平段%轨迹控制%机械钻速%油基钻井液%加拿大
非常規油氣田%長水平段%軌跡控製%機械鑽速%油基鑽井液%加拿大
비상규유기전%장수평단%궤적공제%궤계찬속%유기찬정액%가나대
unconventional oil/gas field%long horizontal section%trajectory control%penetration rate%oil-based drilling fluid%Canada
由于致密气等非常规油气田开发成本高,迫切需要进行优快钻井研究降低钻井成本。非常规油气开发需要在储层内布置长水平井段,针对长水平井段井眼轨迹控制困难、机械钻速低的技术难题,通过计算,分析了底部钻具组合力学特性,优化了底部钻具组合,提高水平段复合钻进比例,配合钻头选型,减少了起下钻次数;采用钻柱振荡器提高钻压传递效率,针对水平井段优化配置油基钻井液体系,大幅度降低了摩擦因数,又抑制了井壁失稳。加拿大daylight非常规油气田应用结果表明,应用优快钻井技术大幅度降低了钻井周期和成本,为国内非常规油气田高效开发提供了借鉴。
由于緻密氣等非常規油氣田開髮成本高,迫切需要進行優快鑽井研究降低鑽井成本。非常規油氣開髮需要在儲層內佈置長水平井段,針對長水平井段井眼軌跡控製睏難、機械鑽速低的技術難題,通過計算,分析瞭底部鑽具組閤力學特性,優化瞭底部鑽具組閤,提高水平段複閤鑽進比例,配閤鑽頭選型,減少瞭起下鑽次數;採用鑽柱振盪器提高鑽壓傳遞效率,針對水平井段優化配置油基鑽井液體繫,大幅度降低瞭摩抆因數,又抑製瞭井壁失穩。加拿大daylight非常規油氣田應用結果錶明,應用優快鑽井技術大幅度降低瞭鑽井週期和成本,為國內非常規油氣田高效開髮提供瞭藉鑒。
유우치밀기등비상규유기전개발성본고,박절수요진행우쾌찬정연구강저찬정성본。비상규유기개발수요재저층내포치장수평정단,침대장수평정단정안궤적공제곤난、궤계찬속저적기술난제,통과계산,분석료저부찬구조합역학특성,우화료저부찬구조합,제고수평단복합찬진비례,배합찬두선형,감소료기하찬차수;채용찬주진탕기제고찬압전체효솔,침대수평정단우화배치유기찬정액체계,대폭도강저료마찰인수,우억제료정벽실은。가나대daylight비상규유기전응용결과표명,응용우쾌찬정기술대폭도강저료찬정주기화성본,위국내비상규유기전고효개발제공료차감。
Due to high cost of unconventional oil/gas ifelds development like tight gas, it is in urgent need to study optimized fast drilling in order to reduce drilling costs. The development of unconventional oil and gas needs to place long horizontal sectionin in the reservoir. In view of the technical challenges like dififculty in control of wellbore trajectory in long horizontal section and low penetra-tion rate, the mechanical properties of bottomhole assembly was analyzed and optimized through computation, and the compound drill-ing rate in the horizontal section was improved, all of which reduced the number of trips in combination with bit selection. The drillstring oscillator was used to improve wob transferring efifciency;oil-based drilling lfuid was specially prepared for horizontal section, which greatly reduced the friction factor and effectively inhibited wellbore instability. The application of optimized fast drilling technology in Daylight Unconventional Oil/Gas Field (Canada) shows that this technology signiifcantly reduces drilling period and drilling costs, and provides useful reference for high-efifcient development of domestic unconventional oil/gas ifelds.