石油钻采工艺
石油鑽採工藝
석유찬채공예
OIL DRILLING & PRODUCTION TECHNOLOGY
2013年
5期
111-117
,共7页
许寒冰%李宜坤%魏发林%才程%杨立民
許寒冰%李宜坤%魏髮林%纔程%楊立民
허한빙%리의곤%위발림%재정%양립민
气井%选择性化学堵水%堵水难度%堵水原理%堵水方式%治水模式
氣井%選擇性化學堵水%堵水難度%堵水原理%堵水方式%治水模式
기정%선택성화학도수%도수난도%도수원리%도수방식%치수모식
gas well%selective chemical water shut-off%water shut-off dififculty%water shut-off principle%water shut-off method%water treatment method
气井出水影响气井生产,尽管气井堵水是治理气井出水的有效方法,然而该技术的研究因其操作难度大、风险大而进展缓慢,仍处于实验室研究阶段。文中首先分析了气井堵水难度大、风险大的原因在于选择性堵水的需求,进而在吸收、借鉴国内外已有研究成果的基础上研究形成气井化学堵水新方法,认为遵从三类选择性堵水原理可有效堵水,第一类是堵剂材料本身在注入地层后具有气水选择性;第二类是堵剂进入产水气层后使岩石表面润湿性向憎水方向改变,提高气相相渗,降低水相相渗;第三类是堵剂遇水发生物理、化学反应发生膨胀、聚集、或沉淀,起到堵水作用,遇气则无封堵作用。从全气藏的角度提出了气藏整体治水方法,该研究对气井化学堵水方法研究提供了借鉴。
氣井齣水影響氣井生產,儘管氣井堵水是治理氣井齣水的有效方法,然而該技術的研究因其操作難度大、風險大而進展緩慢,仍處于實驗室研究階段。文中首先分析瞭氣井堵水難度大、風險大的原因在于選擇性堵水的需求,進而在吸收、藉鑒國內外已有研究成果的基礎上研究形成氣井化學堵水新方法,認為遵從三類選擇性堵水原理可有效堵水,第一類是堵劑材料本身在註入地層後具有氣水選擇性;第二類是堵劑進入產水氣層後使巖石錶麵潤濕性嚮憎水方嚮改變,提高氣相相滲,降低水相相滲;第三類是堵劑遇水髮生物理、化學反應髮生膨脹、聚集、或沉澱,起到堵水作用,遇氣則無封堵作用。從全氣藏的角度提齣瞭氣藏整體治水方法,該研究對氣井化學堵水方法研究提供瞭藉鑒。
기정출수영향기정생산,진관기정도수시치리기정출수적유효방법,연이해기술적연구인기조작난도대、풍험대이진전완만,잉처우실험실연구계단。문중수선분석료기정도수난도대、풍험대적원인재우선택성도수적수구,진이재흡수、차감국내외이유연구성과적기출상연구형성기정화학도수신방법,인위준종삼류선택성도수원리가유효도수,제일류시도제재료본신재주입지층후구유기수선택성;제이류시도제진입산수기층후사암석표면윤습성향증수방향개변,제고기상상삼,강저수상상삼;제삼류시도제우수발생물리、화학반응발생팽창、취집、혹침정,기도도수작용,우기칙무봉도작용。종전기장적각도제출료기장정체치수방법,해연구대기정화학도수방법연구제공료차감。
Water production from gas wells affects gas production. Though water shut-off is an effective method to cure water production on gas wells, the research and development on water shut-off technique has little progress, because of dififculty and risk of the treating operation, and it still locates at indoor research stage. The paper ifrstly analyzed the reason of high dififculty and high risk of gas well water shut-off, which is the demand of selective water shut-off treatment. Furthermore, based on the absorbing and referencing of the current research progress at home and abroad, from the view point of water shut-off principles, three novel types of water shut-off methods are formed. The ifrst principle is that the water shut-off agent itself has gas-water selection capacity after injected into reser-voirs;the second one is that the agent changes wettability of rock surface into more hydrophobic after getting into water beard gas for-mations, resulting in gas relative permeability increase and water relative permeability decrease;the third one is that the agent has some physical or chemical reactions when contacting water, such as expansion, assembling, or precipitation, to plug water lfow, but no reaction when contacting gas. Furthermore, the paper proposed an integrated water treatment method from the whole gas reservoir point of view.