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Effect of Basic Parameters on the Viscosity of Synthetic-Based Drilling Fluids

机译:基础参数对基于合成钻井液粘度的影响

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In this study the effect of interactions among the ingredients of synthetic-based fluids (SBFs) on the rheology of the fluid at ambient temperature was investigated.It has been also attempted that through examination on the important variables affecting those interactions,the mechanism of viscosity building in SBFs be identified.Rheology measurements along with the microscopic observations from the invert emulsion structure of the SBFs can be utilized for such an examination.Viscosity building in the SBFs by means of organophilic clays is a function of several parameters including the type and amount of the clay,the synthetic based fluid,the composition of the internal dispersed phase,mixing time,and the type of emulsifier.The impact of the synthetic-based fluid,i.e.an ester,olefin,or a paraffin,organophilic clays,water,calcium chloride,emulsifiers,and the mixing time on the rheological behavior of the produced mud was thoroughly investigated.Micrographs from scanning electron microscope (SEM) revealed that the presence of water has a vital role on the dispersion of clay in the fluid while presence of calcium chloride lowers both the stability of the fluid and the dispersion of the clay.Samples containing calcium chloride exhibited instability and phase separation within a 24-hours period.SEM micrographs and rheological measurements also revealed that the degree of clay dispersion depends on the polarity of the base fluid and the interaction of the polar groups in the fluid molecules with those of clays.The observations on the prepared samples at ambient temperature demonstrated that the minimum amount of clay content for a homogeneous and stable fluid is about 6 lb/bbl.The latter observation also confirmed the role of the organophilic clays on the stability of the invert emulsions.Investigations on the effect of shear time on the viscosity of the fluids at ambient temperature resulted in a more appropriate thixotropic properties for esters in comparison with olefins and paraffins,e.g.ester based fluids reached the maximum viscosity after 20 minutes of mixing while that was about 60 minutes for the paraffin and olefin based fluids.The latter observation clearly demonstrates the superior dispersion behavior of the clays in esters.The occurrence of maximum viscosities shifted toward lower mixing times at elevated temperatures.This observation shows the favorable influence of the temperature on the thixotropic behavior of the SBFs.
机译:在这项研究中,研究了合成的流体(SBF)成分之间相互作用对环境温度下流体流变的影响。已经尝试通过检查影响这些相互作用的重要变量,粘度的机制鉴定SBF的建筑物。从SBF的倒反转乳液结构的微观观测中,可以使用来自SBF的微观观察的微观观测。通过有机粘土,SBF中的缺乏建筑物是包括类型和数量的若干参数的函数粘土,合成基流体,内部分散相的组成,混合时间和乳化剂的类型。基于合成的流体,IEAN酯,烯烃或石蜡,有机粘土,水,氯化钙,乳化剂和混合时间对所产生的泥浆的流变行为进行了彻底研究。从扫描电子芯片中拍摄PE(SEM)表明,水的存在有氯化钙降低两者流体和含氯化钙表现出不稳定性和相分离的clay.Samples的分散体的稳定性的流体,同时存在对粘土的分散体中的至关重要的作用在24小时内。微图和流变测量还显示粘土分散的程度取决于基础流体的极性和与粘土中的流体分子中的极性基团的相互作用。对制备样品的观察结果在环境温度下,均匀和稳定流体的最小粘土含量为约6磅/磅。后一种观察也证实了有机粘土对逆变乳液的稳定性的作用。对剪切时间效果的影响在环境温度下流体的粘度导致酯类与烯烃相比的更适合触变性质S和石蜡,酯基流体在混合20分钟后达到最大粘度,同时对于石蜡和烯烃基流体约为60分钟。后一种观察清楚地证明了酯类中粘土的优异分散行为。最大的发生粘度在升高的温度下转向更低的混合时间。该观察表明温度对SBFS触变行为的良好影响。

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