吸水剖面

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吸水剖面吸水剖面
  1. 吸水剖面资料在油田开发中的应用

    Application of Water Injection Profile Data in Oilfield

  2. 用高强度同位素测试基线异常高井的吸水剖面

    Using high intensity isotope tracer to test Water injection profile of high baseline abnormal wells

  3. SZ36-1油田原油粘度高,层间纵向渗透率差异大,地层非均质性极强,注水井的吸水剖面不均,水窜严重,必须首先优选注聚调剖井层。

    Synthetically considering various factors , polymer flooding is recommended and optimization in profile improvement must be conducted first for the distinct difference of layer-layer permeability , severe heterogeneity as well as uneven water-injection profile .

  4. 所以进行同位素吸水剖面测井时,W48200射孔内的同位素由于滤积地层表层而处于探测半径之内,基本全部被仪器显示吸水异常;

    During an isotope water entry profile logging , the isotope in W48200 is displayed as abnormally water entry because it is located on the surface of formation and within the detected diameter .

  5. 同位素吸水剖面测井中沾污的控制与校正方法

    Control of Radioactive Contamination in Isotope Tracer Logging and Its Correction

  6. 复杂注水井吸水剖面流量计测井技术

    Flowmeter logging technology of water injection profile for complex injection wells

  7. 同位素吸水剖面测井影响因素探讨

    Discussion of the Factors to Affect the Profile of Isotope Suction

  8. 地下水水化学剖面图注水井暂堵酸化改善吸水剖面技术研究

    Research of improving technology profile by water injection well temporary acidizing

  9. 吸水剖面测井中同位素两次释放新工艺

    New Technique for Twice Isotope Releases in Injection Profile Logging

  10. 利用吸水剖面测试资料优化分层注水措施

    Optimizing Separated Layer Water-Flooding by Utilizing Injection Profile Test Data

  11. 大粒径同位素吸水剖面测井试验的分析

    Analyzing a Test of Water Entry Profile Log with Big-Size Isotope Carriers

  12. 用大粒径同位素测井技术测定吸水剖面

    Determination of injectivity profile with large grain-size isotope logging technique

  13. 吸水剖面同位素曲线低幅度异常解释与应用

    Interpretation and Application of Low Amplitude Anomaly of Injectivity Profile Isotopic Curves

  14. 用侵入半径和吸水剖面估算渗透率。

    The permeability is calculated by mud invasion radius and water injection profile .

  15. 五参数吸水剖面测井资料解释方法应用研究

    Application of Five Parameter Injection Profile Logging Data Interpretation

  16. 井温曲线在吸水剖面测井解释中的应用

    Application of Temperature Curve in the Input Profile Log

  17. 利用吸水剖面测井资料分析管外窜槽

    Outside Casing Channeling Analysis with Injection Profile Logging Data

  18. 吸水剖面和产液剖面资料在严重非均质油藏剩余油研究中的应用

    The Remaining Oil Study in Serious Heterogeneity Oilfield by Using Injection and Production Profile

  19. 水井注入压力升高,吸水剖面得到调整,层间矛盾得到改善;

    The injection pressure rose , the injectivity profile and interlayer contradiction was modulated .

  20. 用同位素(113)~In测吸水剖面减少放射性污染

    Measuring Water Entry Profile with Isotope ( 113 ) ̄ In to Reduce Radioactive Pollution

  21. 深射孔吸水剖面解释方法研究

    A study on the interpretation method of the water entry profile of deep perforation

  22. 大港南部油田提高吸水剖面测试成功率探讨

    A Discussion on Raising Success Rate of Injection Profile Survey in Southern Dagang Oilfield

  23. 吸水剖面同位素污染控制研究

    The Control of Injection Profile Isotopic Contamination

  24. 实际结果表明,对沾污进行校正后提高了吸水剖面测井的解释精度。

    Application result proves that such a correction can improve interpretation accuracy of injection profile log .

  25. 放射性同位素示踪法测吸水剖面工艺在油田已应用很久了。

    Radioisotopic tracer technology measuring water entry profile has been used in oil fields for a long time .

  26. 介绍1种新的吸水剖面测井技术&氧活化测井技术在华北油田的应用效果。

    This article introduces the application of a new water injection profile logging technique & oxygen activation logging .

  27. 生产井数-注入井数比对于注水开发油田,通常使用放射性同位素测井测量注水井的吸水剖面。

    Ratio of producers to injectors Injectivity profile is commonly determined with radioisotope tracer test in water-flood oilfield .

  28. 此堵剂可用于油井选择性堵水及注水井吸水剖面的调整。

    This gelling system can be used for selective water-plugging in oil wells and profile controlling in injection wells .

  29. 这种同位素示踪剂载体已在河南油田吸水剖面测井中应用,并见到了很好的效果。

    The application of this support carrier to isotopic injection profile logs has been very effective in Henan Oilfield .

  30. 提出利用吸水剖面资料研究层间非均质性对油田注水开发的影响的新思路;

    A new method that applying water injection profile data to researching interlayer inhomogeneity effect water flooding was introduced .