石油机械
石油機械
석유궤계
China Petroleum Machinery
2015年
10期
68-70,75
,共4页
曹畅%彭振华%张建军%张园%柏森%丁雯
曹暢%彭振華%張建軍%張園%柏森%丁雯
조창%팽진화%장건군%장완%백삼%정문
超深井%有杆泵%助抽器%泵效%流线型%塔河油田
超深井%有桿泵%助抽器%泵效%流線型%塔河油田
초심정%유간빙%조추기%빙효%류선형%탑하유전
ultra-deep well%rod pump%pumping improvement device%pump efficiency%streamlined%Tahe Oilfield
针对塔河油田超深井存在供液不足和泵效低的问题,通过研发井下配套工具,开展了超深井提质提效深抽现场试验研究。重点介绍了流线型助抽器的主要结构及工作原理,该装置不改变地层渗透能力,只是根据能量守恒原理,提高流体瞬间线速度,使其压能变动能,加快流体流速,改变流体流态,提高泵的充满系数,增加产量;通过螺旋切入设备改变流体的入泵状态,减小入泵阻力。现场试验结果表明,该工具在不改变泵体结构的情况下,可以达到提升流体入泵速度、提高泵的充满程度的目的,9口试验井平均泵效提高4?9%,其中6口井提液效果明显,泵效平均提高21?3%,日产液平均提高5?3 t。
針對塔河油田超深井存在供液不足和泵效低的問題,通過研髮井下配套工具,開展瞭超深井提質提效深抽現場試驗研究。重點介紹瞭流線型助抽器的主要結構及工作原理,該裝置不改變地層滲透能力,隻是根據能量守恆原理,提高流體瞬間線速度,使其壓能變動能,加快流體流速,改變流體流態,提高泵的充滿繫數,增加產量;通過螺鏇切入設備改變流體的入泵狀態,減小入泵阻力。現場試驗結果錶明,該工具在不改變泵體結構的情況下,可以達到提升流體入泵速度、提高泵的充滿程度的目的,9口試驗井平均泵效提高4?9%,其中6口井提液效果明顯,泵效平均提高21?3%,日產液平均提高5?3 t。
침대탑하유전초심정존재공액불족화빙효저적문제,통과연발정하배투공구,개전료초심정제질제효심추현장시험연구。중점개소료류선형조추기적주요결구급공작원리,해장치불개변지층삼투능력,지시근거능량수항원리,제고류체순간선속도,사기압능변동능,가쾌류체류속,개변류체류태,제고빙적충만계수,증가산량;통과라선절입설비개변류체적입빙상태,감소입빙조력。현장시험결과표명,해공구재불개변빙체결구적정황하,가이체도제승류체입빙속도、제고빙적충만정도적목적,9구시험정평균빙효제고4?9%,기중6구정제액효과명현,빙효평균제고21?3%,일산액평균제고5?3 t。
To address the issues of liquid supply shortage and low pump efficiency of ultra?deep well in Tahe Oilfield, downhole supporting tools have been developed and onsite tests have been conducted on the ultra?deep pumping well to improve efficiency and quality?The main structure and working principle of the streamlined pum?ping improvement device has been introduced?This tool does not change the formation permeability, but based on the principle of conservation of energy, increases the fluid instantaneous line speed, turning the pressure energy into kinetic energy, speeding up fluid flow, changing fluid flow regime, thus increase pump coefficient of fullness to increase production?The spiral cut device could change the status of fluid into the pump, reducing the pump re?sistance?Field tests results show that the tool could increase the fluid velocity into pump and improve the pump fill?ing degree without changing the pump structure?The nine test wells had an increased average pump efficiency of 4?9%?Six of the nine wells had a significant fluid extraction performance with increased average pump efficiency of 21?3% and enhanced average daily production of 5?3 t.