石油钻采工艺
石油鑽採工藝
석유찬채공예
OIL DRILLING & PRODUCTION TECHNOLOGY
2012年
6期
49-52
,共4页
曹阳%贾宝%熊昕东%乔治国
曹暘%賈寶%熊昕東%喬治國
조양%가보%웅흔동%교치국
超深气井%硫化氢%测试%事故分析%预防措施
超深氣井%硫化氫%測試%事故分析%預防措施
초심기정%류화경%측시%사고분석%예방조시
ultra-deep gas well%hydrogen sulfide%testing%accident analysis%preventive measures
元坝气田长兴组气藏埋深7000 m 左右,井底温度高达157℃,作业工况及井下条件复杂,测试难度大、风险高,测试时面临管柱埋卡、脱落、工具失效等问题.针对现场大量事故案例,在理论分析和现场试验基础上研究出各类事故相应的预防措施.压井工艺由直接压井改为循环隔离液后再压井,并对钻井液进行优化,解决了钻井液分相、沉淀等问题,降低了管柱埋卡事故率;优化施工水力参数,消除了工具被刺蚀风险;对 RTTS 封隔器中心管和水力锚锚爪进行改进,避免了封隔器中心管断裂,同时提高了封隔器坐封稳定性;合理控制油管入井次数减少了油管脱落风险.以上措施在 YB205等10余口井中成功应用,有效降低了元坝气田测试事故率,为同类井作业提供借鉴.
元壩氣田長興組氣藏埋深7000 m 左右,井底溫度高達157℃,作業工況及井下條件複雜,測試難度大、風險高,測試時麵臨管柱埋卡、脫落、工具失效等問題.針對現場大量事故案例,在理論分析和現場試驗基礎上研究齣各類事故相應的預防措施.壓井工藝由直接壓井改為循環隔離液後再壓井,併對鑽井液進行優化,解決瞭鑽井液分相、沉澱等問題,降低瞭管柱埋卡事故率;優化施工水力參數,消除瞭工具被刺蝕風險;對 RTTS 封隔器中心管和水力錨錨爪進行改進,避免瞭封隔器中心管斷裂,同時提高瞭封隔器坐封穩定性;閤理控製油管入井次數減少瞭油管脫落風險.以上措施在 YB205等10餘口井中成功應用,有效降低瞭元壩氣田測試事故率,為同類井作業提供藉鑒.
원패기전장흥조기장매심7000 m 좌우,정저온도고체157℃,작업공황급정하조건복잡,측시난도대、풍험고,측시시면림관주매잡、탈락、공구실효등문제.침대현장대량사고안례,재이론분석화현장시험기출상연구출각류사고상응적예방조시.압정공예유직접압정개위순배격리액후재압정,병대찬정액진행우화,해결료찬정액분상、침정등문제,강저료관주매잡사고솔;우화시공수력삼수,소제료공구피자식풍험;대 RTTS 봉격기중심관화수력묘묘조진행개진,피면료봉격기중심관단렬,동시제고료봉격기좌봉은정성;합리공제유관입정차수감소료유관탈락풍험.이상조시재 YB205등10여구정중성공응용,유효강저료원패기전측시사고솔,위동류정작업제공차감.
With a burial depth of approximate 7 000 m, and as high as 157 ℃of downhole temperature, the gas reservoir in Changx-ing Formation in Yuanba gas field is of complex working condition and downhole geological condition, so the testing is hard to carry out, where high risks such as string being buried, stuck or falling off and malfunction of tools may occur. Based on theory analysis and field test, corresponding preventive measures for various accidents have been made by means of analyzing a large number of onsite accident cases. Well kill was enabled after seal liquid circulation in stead of traditional direct well kill; furthermore, the drilling fluid was optimized. In this way, drilling fluid parvafacies and precipitation and other problems were solved, and the string was less likely to be buried and stuck; construction hydraulic parameters were optimized to eliminate the risk that tools might be punctured or corroded;RTTS packer central tube and hydraulic anchor jaws were improved to avoid the fracture of packer central tube while improving the stability of packer setting; the reasonable control of the frequency of oil tube running reduced the risk of oil tube falling off. The above measures have been successfully applied in over 10 wells including well YB205, which effectively reduced accident rate in Yuanba gas field testing. They can be used as reference in well operation of the same kind.