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1)  Spume well killing liquid
泡沫压井液
2)  micro foam control fluid
微泡沫压井液
1.
The low density and micro foam control fluid was optimized to overcome this challenge.
通过实验优选出了一种低密度水基微泡沫压井液
3)  Foam drilling fluid
泡沫钻井液
1.
Stability evaluation of foam drilling fluid using light backscattering theory;
利用光散射原理评价泡沫钻井液的稳定性
2.
Influence of granule sedimentation on density change of foam drilling fluid.;
泡沫钻井液颗粒沉降对密度变化规律的影响
3.
Influence of magnetic field on rheology of foam drilling fluid;
磁场对泡沫钻井液流变性能的影响
4)  Foamed well cleaning fluid
泡沫洗井液
5)  foam fracturing fluid
泡沫压裂液
1.
Laminar flow of foam fracturing fluid in fractures;
泡沫压裂液在裂缝内的层流流动
2.
Study on the rheology of dry foam fracturing fluid using power-law (PL) model and modified power-law (PL) model
应用幂律和改良幂律模型研究干法泡沫压裂液流变性
3.
The rheology mechanism of foam fracturing fluid was studied by Eulerian-Eulerian two-phase fluid method with the gas phase being treated as 'granular'.
从两相流的角度出发,将泡沫压裂液的气相处理成气泡相并建立两相欧拉颗粒流模型来研究泡沫压裂液的流变性。
6)  micro-foam drilling fluid
微泡沫钻井液
1.
Flow experiment of circulative micro-foam drilling fluid in well bore under HTHP conditions;
井筒中高温高压可循环微泡沫钻井液流动实验
2.
Flow experiment of circulative micro-foam drilling fluid in pipe under HTHP condition;
高温高压下可循环微泡沫钻井液管路流动试验
3.
Study and application of circular micro-foam drilling fluid technology;
可循环微泡沫钻井液技术研究与应用
补充资料:压井液
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性质:对油、气井进行修井作业时,为了防止井喷,而泵入井内的液体,其密度需根据油藏压力和深度来选择。若液柱压力过大则会造成压井液流失和污染;过小则无法控制井喷。一般静液柱压力要稍大于油藏压力,为防止和减小压井液对油层的伤害,有时其中加有添加剂,如防膨剂、表面活性剂等。

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