陳麗鎣 周志軍



摘 ? ? ?要:為了解決目前長垣外圍油田的特高含水開發期其開采增油量增幅小的問題,普遍使用交聯劑與聚合物(HPAM)組成的弱凝膠調驅體系來提高采收率,通過室內巖心流動實驗方法研究了復合離子調驅體系的主劑濃度、注入量、注入方式和段塞優化、注入時機和注入速度參數進行優化分析。結果表明:選擇1 200 mL/L的主劑濃度,0.3PV的注入量,90%的含水時機,采收率均能達到80%以上;三倍級差時采收率增幅達到最高值,封堵率隨級差倍數的增加而降低??梢姡瑥秃想x子弱凝膠調驅體系對長垣外圍油田提高采收率方面有很大幫助,優選出最適宜的注入工藝可以達到最優效果。
關 ?鍵 ?詞:調驅體系;應用性能評價;復合離子凝膠;采收率增幅
中圖分類號:TQ 357.4 ? ? ? ?文獻標識碼: A ? ? ?文章編號: 1671-0460(2020)04-0577-04
Abstract: In order to solve the problem of small increase rate in oil production increment in the development stage of extra high water cut in Changyuan peripheral oilfields, the weak gel flooding system composed of crosslinking agent and polymer (HPAM) was widely used to enhance oil recovery. The main agent concentration, injection volume, injection mode and slug optimization, and timing of injection were studied through laboratory core flow experiment. The injection velocity parameters were optimized. The results showed that, when the main agent concentration was ? 1 200 mL/L, the injection volume was 0.3 PV and the injection timing was at the water cut reaching 90%, the recovery rate was more than 80%; when the permeability ratio was 3, the increase rate of the recovery factor reached the highest value, and the plugging rate decreased with the increase of the permeability ratio. So the composite ion weak gel profile control and flooding system was very helpful for enhancing oil recovery in Changyuan peripheral oilfields.
Key words: Profile control and flooding system; Application performance evaluation; Composite ionic gels; Recovery increase rate
目前大慶油田開發進入注水開發的后期,地層處于高含水階段,地層中的剩余油分布有很大變化且很散,但是采出程度只占40.6%,還有大量的剩余儲量未被開采出來。而由于長期開采而水優先進入高滲層反復沖刷造成地層內非均質性非常嚴重,形成的水流通道也是油井出水、采收率較低的原因,由于這種現象造成的產出液量非常大,處理產出液的工作也很繁重,對管線有一定損耗還浪費資源,成本提高使經濟效益下降,為了減少無效的水循環現象[1-3],提高原油采收率是現在最重要的問題,為了解決這一問題,眾位學者都對其進行了研究認為做直接有效的方式就是進行調驅[4-6]。其中使用最廣泛的就是凝膠調驅劑,而復合離子凝膠調驅劑的效果更好[7]。本文針對試驗A區塊的調驅需要,通過對復合離子凝膠調驅劑的參數和性能方面進行評估,來分析最適宜的調驅方式[8]。
1 ?實驗部分
1.1 ?材料和儀器
實驗儀器:平流泵、電子秤、恒溫水箱、方形巖心夾持器、中間容器、手搖泵、恒溫箱、攪拌器、巖心、六通閥、10mL移液管若干、量筒若干、管線若干、布氏黏度計、廣口瓶若干。
實驗材料:弱凝膠A-800 ppm, B-1 800 ppm,C-200 ppm;級差巖心100/350、200/450;三層巖心:150/300/450。
1.2 ?實驗步驟
凝膠配置工藝:取200 mL地層水裝入500 mL燒杯中,開始攪拌;準確稱量1.700 g聚合物;準確稱量3.600 g交聯劑,緩慢加入到攪拌旋渦中,攪拌均勻;準確稱0.045 g穩定劑,緩慢加入到攪拌旋渦中,攪拌至完全溶解;將上述溶液裝入密閉容器,以此模擬凝膠在地層中的實際成膠情況,放入48 ℃烘箱等待成膠。
巖心實驗:模擬溫度:40 ℃,所用模擬水為慶新油田提供的模擬水;用一定比例的原油和煤油混合配制模擬油。實驗流程如圖1。
(1)方形差異巖心飽和模擬水、飽和模擬油