热采

  • 网络thermal recovery
热采热采
  1. 我国稠油开采以注蒸汽热采为主,其产量超过稠油产量的80%。

    The main of heavy oil recovery is steam injection of thermal recovery in China and its output is exceeded 80 percents .

  2. 在稠油开采过程中,无论是采用注蒸汽热采技术还是适度出砂冷采技术,都面临出砂的问题。

    In the exploitation of heavy oil , the question of sand production is inevitable whether using steam injection thermal recovery technology or limited sand Cold Recovery technology .

  3. 稠油热采锅炉结垢物的X射线衍射分析

    X-ray Diffraction Analysis on the Thick Oil Hotly Picks of the Boiler Scaling

  4. 在充分了解油田实际使用工况的基础上,成功设计开发出了一种注蒸汽稠油热采井专用的非API系列套管-TP90H。

    Non-API casing TP90H for steam injection well were designed and developed on the basis of realizing casing service environment .

  5. 处理后的油田污水对热采锅炉20G腐蚀性的研究

    Corrosivity of treated wastewater on steel 20g of boiler for thermal production well in oil field

  6. 将注汽热采井井筒温度场传输到井筒应力模型中,用有限元软件ANSYS进行了计算。

    The temperature field of the steam injection well is inputted into the stress field model of the steam injection well . The stress field is calculated by using software package ANSYS .

  7. 气-汽发生器装置是一种新型热采设备,该装置产生的气-汽混合物主要成分为N2、CO2及水蒸汽。

    Gas vapour generator is a new kind of thermal recovery equipment . The main products produced by this equipment contain N 2 , CO 2 and water vapour .

  8. 通过宏观形貌、化学成分、金相组织、力学性能、X射线衍射、扫描电镜观察等分析手段判断出热采注汽管线的最终破裂原因是氢腐蚀造成。

    The analysis of macroforms , chemical compositions , metallographic structure and mechanisms performance as well as x-ray and electronic scanner examination have found that the rupture of the steam injection pipe was caused by hydrogen corrosion .

  9. 针对深层稠油油藏,利用热采物理模拟技术,研究了热水添加N2泡沫段塞驱提高采收率的可行性。

    The feasibility of improving recovery factor of deep heavy oil reservoir by hot water plus N_2 foam slug is studied by using physical modeling for thermal recovery .

  10. CHY稠油热采添加剂的应用研究

    Application and study of CHY additive for heavy oil thermal recovery

  11. 试验表明,改性COPNA树脂可用作高温油井防砂材料和稠油热采防砂材料。

    The modified COPNA resin can be used as the sand control agent in the high temperature oil well .

  12. 根据新疆油田稠油热采的具体情况,从环境保护的角度出发,研究了H2S等有毒有害气体对环保工作的巨大影响。

    According to the specific conditions of heavy oil thermal recovery in Xinjiang Oilfield , and in view of environment protection , the huge influence of toxic gas like H2S on environment protection is studied .

  13. 热采井RCY-1液凝调剖剂

    Fluid gelling profile control agent rcy-1 in heat production well

  14. 室内确定了一种适用于热采井(井深约2000m,蒸汽驱时温度为350℃)的抗高温低密度水泥浆体系。

    A high temperature tolerable lightweight cement slurry system is designed for heated recovery well with depth of 2000m , and temperature as high as 350 C during steam flooding .

  15. 本文结合稠油油田的实际情况,推导出HCZ预测模型在热采中注汽参数的预测公式。

    This paper has provided a projection formula of steam injection parameters for HCZ model according to actual situation of heavy oil reservoirs .

  16. 采用Mises塑性流动准则对热胀式塑料密封热采封隔器的热胀筒和塑料密封套的塑性与热胀剂内压的关系进行了研究。

    By using the Mises plastic flow criterion , the relation between the plasticity of the heat expansion harrel and the plastic sealing sleeve on a heat expansion - type plastic sealed packer and the internal pressure of the heat expanding agent is investigated .

  17. 稠油开采通常采用热采的方式,其中包括蒸汽驱、蒸汽吞吐、火烧油层、蒸汽辅助重力驱油(SAGD)等。

    Exploitation of heavy oil usually selects the method of thermal recovery , including steam flooding , steam stimulation , in-situ combustion , steam assisted gravity drainage oil ( SAGD ) and so on .

  18. 针对热采井套管损坏日益严重,制约热采油井正常生产这一问题,研制开发了适合于超稠油热采井需要的TP100H套管。

    In accordance with the increasing problems of casing failure in thermal recovery wells , which restrict normal production , TP100H casing has been developed to meet the need of thermal recovery wells .

  19. 注蒸汽热采是稠油开采的一种有效手段,蒸汽辅助重力驱油(SAGD)技术则是水平井及注蒸汽工艺技术在稠油开采中的具体运用。

    Steam injection recovery is an efficient method for heavy oil recovery , and steam assisted gravity drainage ( SAGD ) is a specific application by combining horizontal well with steam injection recovery technique . The well trajectory is calculated with the numerical analytical method .

  20. 稠油热采动态电法监测的应用

    Application of Electrical Detection of Thermal Recovery Performance of Heavy Oil

  21. 热采条件下储集岩的软化及其防治

    Reservoir rock softening and prevention during steam or hot water injection

  22. 热采稠油的新设备&井下蒸汽发生器

    New Device for Heavy Oil Heat Production - Downhole Steam Generator

  23. 稠油热采井口光杆密封装置的研究与应用

    Study and application of polished rod seating on thermal recovery wellhead

  24. 大港油田孔102井蒸汽吞吐热采试验研究

    Studies on Steam Recovery in Kong 102 Well , Dagang Oilfield

  25. 石油热采注汽管线腐蚀破裂原因

    Causes of Corrosion Cracking of Steam Injection Pipeline for Oil Production

  26. 稠油热采装置密封面的等离子弧堆焊

    Plasma arc surfacing for sealing face of thick oil thermal equipment

  27. 热采过程中井眼热应力定量评价方法

    Quantitative evaluation method for thermal stress around borehole during thermal recovery

  28. 稠油热采注汽管线爆裂失效分析

    Cracking analysis of steam pipeline for thermal recovery of viscous oil

  29. 磺酸盐助剂在稠油热采中的应用

    The Application of Sulfonate in the Thermal Recovery of Heavy Oil

  30. 两参数仪器在稠油热采测井中的应用

    Application of the two parameter logging instrument to heavy oil recovery