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1)  thermal recovery
热采
1.
Feasibility analysis of thermal recovery technology after waterflooding to heavy oil reservoirs;
稠油油藏水驱转热采工艺可行性分析
2.
Laboratory simulation study on thermal recovery of low permeability light oil reservoir;
低渗透轻质油油藏热采室内模拟实验研究
3.
The finite element analysis of the casing failure mechanisms of thermal recovery wells in sand production;
热采井出砂套管损坏机理的有限元分析
2)  thermal production
热采
1.
New technology for casing damage prevention and cure of thermal production wells in Liaohe Oilfield;
辽河油田热采井套损防治新技术
2.
Through several year's research,a new type of casing head in view of the problems encountered in preceding stress cementing in thermal production well.
针对稠油热采井预应力固井中存在的问题,研制了一种适用于稠油热采井预应力固井的新型套管头。
3)  thermal well
热采井
1.
Aiming at the problem that eccentricity of casing in circular hole happened in thermal well,the finite element model is established and the effect of casing eccentricity on wellbore temperature field,casing stress and displacement were analyzed.
针对热采井中套管在圆形井眼中出现偏心的问题建立了有限元模型,分析套管偏心对井筒温度场和套管应力、位移的影响。
4)  thermal recovery well
热采井
1.
Borehole thermal stress analysis of thermal recovery well with micro-annulus in its first interface;
一界面存在微间隙的热采井井筒热应力分析
2.
Influence of steam injection technology string on casing failure in thermal recovery wells;
注汽工艺管柱对热采井套损的影响
3.
Nodal analysis during producing with thermal recovery wells;
热采井生产过程中节点分析方法
5)  thermal recovery engineer
热采工程
1.
The essential technology of steam drive design has been optimized through thermal recovery engineering and numerical simulation: well pattern ad.
采用热采工程、数值模拟方法,优选出蒸汽驱设计的关键技术:井网形式为83 m井距反九点井网;转驱时油层压力及蒸汽驱过程中的压力必须控制在5 MPa以下;单位油藏体积注入速度为1。
6)  steam injection well
热采井
1.
The transient analysis model of thermal-stress coupling in steam injection well is established by finite element software ABAQUS.
利用有限元软件ABAQUS建立了热采井井筒热应力耦合的瞬态分析模型。
2.
Non API casing TP100H for steam injection well were developed on the basis of understanding casing service environment The development background, casing property index, production technology, measured and application results of casings are presente
在充分了解油田实际使用工况的基础上 ,成功开发了一种超稠油热采井专用的非 API系列套管TP10 0 H。
3.
Non-API casing-TP90H and TP100H for steam injection well were designed and developed on the basis of realizing casing service environment.
在充分了解油田实际使用工况的基础上,成功设计开发出了两种注蒸汽稠油热采井专用的非 API 系列套管—TP90H 和 TP100H。
补充资料:核能稠油热采
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性质:采油工业中的稠油采集由于其黏度很大,采集和输送都十分困难。目前采用热采以降低其黏度,这样要消耗大量能源,其中热能占3/4。利用高温气冷堆的700~750℃的出口气体,可以满足热采的热源需求,节省供热用的化石原料和液化燃料,减少对环境的污染和温室效应及增加石油产量。

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