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1)  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
2)  micro-bubble drilling fluid
微泡沫钻井液
1.
Circulating micro-bubble drilling fluid syste;
可循环微泡沫钻井液体系
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)  Stiff foam drilling fluids
硬胶泡沫钻井液
1.
Stiff foam drilling fluids have found wide application in oil fields where applicable because of their ability in enhancing ROP,minimizing permeability impairment,and improving hole cleaning and contamination tolerance of the mud.
硬胶泡沫钻井液不仅具备普通泡沫钻井液能提高机械钻速、及时发现油气层的特点,还具有较强的携岩能力和抗污染能力。
5)  stable foam drilling fluid
稳定泡沫钻井液
6)  aphron drilling fluids
微泡钻井液
1.
Compared with conventional foam,aphron drilling fluids are of special structures and could flow easily,which make it possible recirculating without any of the extra equipment used in air or foam drilling,such as compressors,high pressure hoses or connections to add costs and safety concerns.
介绍了微泡钻井液特性,并结合现场实践讨论了可循环微泡钻探技术在岩心钻探和油气勘探中的多重功效。
补充资料:钻井液污染
分子式:
CAS号:

性质:由于地层或外来物质侵入钻井液中,使钻井液性能变差甚至失效的情况。可分为固相污染、盐污染、钙污染、可溶性钙盐污染、硫化氢污染、细菌污染等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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