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轮南、桑解油田连续清蜡柱塞气举新工艺
引用本文:雷腾蛟,崔小虎,苏洲,杨文明,王红标,段玉明. 轮南、桑解油田连续清蜡柱塞气举新工艺[J]. 石油钻采工艺, 2021, 43(5): 663-667. DOI: 10.13639/j.odpt.2021.05.016
作者姓名:雷腾蛟  崔小虎  苏洲  杨文明  王红标  段玉明
作者单位:1.中国石油塔里木油田分公司轮南油气开发部
摘    要:随着轮南、桑解油田地层能量不断衰竭,部分新井自喷生产一段时间后井筒逐渐积液,以及部分高凝油井举升过程中随着井筒温度的降低而析出蜡质造成流通通道的堵塞.为了解决这一系列问题,通过室内研究与现场试验,在原有柱塞气举工艺的基础上,创新研发出一套"柱塞内部中空带拉杆结构+柱塞外部密封带刮蜡片结构"的一体化柱塞气举新工艺.该工艺...

关 键 词:中空快速柱塞  连续清蜡柱塞  高凝油井  柱塞气举

A new continuous paraffin removal plunger gas lift process used in Lunnan and Sangjie Oilfields
Affiliation:1.Lunnan Oil and Gas Development Department, PetroChina Tarim Oilfield Company, Korla 841000, Xinjiang, China2.Supervision Center, PetroChina Tarim Oilfield Company, Korla 841000, Xinjiang, China
Abstract:In Lunnan and Sangjie Oilfields, wellbore liquid loading occurs in some new wells with the continuous depletion of formation energy after flowing for a while, and paraffin precipitates with the decrease of wellbore temperature in the process of lift in some high pour-point oil wells and blocks flow channels. To solve these problems, a new set of integrated plunger gas lift process of “hollow structure with tie rod inside the plunger + seal structure with paraffin cutter outside the plunger” was innovatively developed on the basis of the original plunger gas lift process by means of laboratory research and field test. This process solves the difficult lift of high pour-point oil wells in the critical state of quit flowing and realizes the continuous production without shutting the well. It has been applied on site 6 well times. Thanks to its application, the gas lift operation of nitrogen producing truck is reduced by 73 times, the mechanical paraffin removing operation is reduced by 122 times, cumulative oil increment is 25 416 t and cumulative gas increment is 1 403×104 m3. The new continuous paraffin removal plunger process presents remarkable field application effect and it has been popularized in the oilfields. And its application realizes the efficient continuous production of the high pour-point oil wells in the critical state of quit flowing.
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