石油钻采工艺
石油鑽採工藝
석유찬채공예
OIL DRILLING & PRODUCTION TECHNOLOGY
2014年
4期
26-29,33
,共5页
吴瑶%毛剑琳%李峰飞%党瑞荣
吳瑤%毛劍琳%李峰飛%黨瑞榮
오요%모검림%리봉비%당서영
深海钻井%救援井%套管%仿真%点电流源
深海鑽井%救援井%套管%倣真%點電流源
심해찬정%구원정%투관%방진%점전류원
deepwater drilling%relief wells%casing%simulation%point current source
深水油气勘探开发已成为石油工业的热点,但井喷等事故时有发生。钻救援井是解决井喷事故的有效方法,其中救援井与事故井相对位置的精确探测是实施救援的关键。利用软件模拟半径为139.7 mm 的井喷井,在其附近设置一个1 A 电流源和一个接地电极,研究电流源和事故井距离、两电极距离、事故井半径对事故井套管上电流密度的影响。研究结果表明:事故井和救援井距离越近,事故井套管上的电流密度越大,且事故井套管上电流密度最小值的位置点越接近电流源所在处的位置;事故井中电流密度最小值的位置点所在处是由点电流源所在处的位置决定的;事故井半径越小,电流密度的幅值变化就越大,其上的电流密度的幅值也越大。研究结果对海上钻井救援提供了一定的理论依据。
深水油氣勘探開髮已成為石油工業的熱點,但井噴等事故時有髮生。鑽救援井是解決井噴事故的有效方法,其中救援井與事故井相對位置的精確探測是實施救援的關鍵。利用軟件模擬半徑為139.7 mm 的井噴井,在其附近設置一箇1 A 電流源和一箇接地電極,研究電流源和事故井距離、兩電極距離、事故井半徑對事故井套管上電流密度的影響。研究結果錶明:事故井和救援井距離越近,事故井套管上的電流密度越大,且事故井套管上電流密度最小值的位置點越接近電流源所在處的位置;事故井中電流密度最小值的位置點所在處是由點電流源所在處的位置決定的;事故井半徑越小,電流密度的幅值變化就越大,其上的電流密度的幅值也越大。研究結果對海上鑽井救援提供瞭一定的理論依據。
심수유기감탐개발이성위석유공업적열점,단정분등사고시유발생。찬구원정시해결정분사고적유효방법,기중구원정여사고정상대위치적정학탐측시실시구원적관건。이용연건모의반경위139.7 mm 적정분정,재기부근설치일개1 A 전류원화일개접지전겁,연구전류원화사고정거리、량전겁거리、사고정반경대사고정투관상전류밀도적영향。연구결과표명:사고정화구원정거리월근,사고정투관상적전류밀도월대,차사고정투관상전류밀도최소치적위치점월접근전류원소재처적위치;사고정중전류밀도최소치적위치점소재처시유점전류원소재처적위치결정적;사고정반경월소,전류밀도적폭치변화취월대,기상적전류밀도적폭치야월대。연구결과대해상찬정구원제공료일정적이론의거。
Deepwater oil and gas exploration and development has become a hot spot in oil industry, but accidents like blowout oc-cur from time to time. The drilling of relief well is a very effective way to kill a blowout well. How to accurately determine the relative location of the relief well from the blowout well is a key to the relief. Using software to simulate blowout well with a radius of 139.7 mm, a 1 A current source and a ground electrode were set in its vicinity, then study was conducted on, the effects of the distance between current source and blowout well, the distance between the two electrodes and the radius of the blowout well on the current density on the casing in the blowout well. The research results show that the nearer the blowout well is to the relief well, the greater the current density is on the casing in the blowout well, and that the location of minimum current density on the casing in blowout well is closer to the location of electric current source. The location of the minimum current density in the blowout well is determined by the location of the point current source. The smaller the blowout well radius is, the greater the change of current density amplitude is, and the greater the amplitude of its above current density is. The research findings provide some theoretical basis for drilling offshore relief wells.