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- W3209407788 abstract "Any improvement in drilling technology is critical for developing the oil and gas industry. The success of drilling operations largely depends on drilling fluid characteristics. Drilling fluids require enough viscosity to suspend the particles and transport them to the surface and enough capability to control the fluid loss into the formation. Rheology and filtration characteristics of drilling fluids are crucial factors to consider while ensuring the effectiveness of a drilling operation. Graphene oxide (GO), xanthan gum (XG), and low-viscosity carboxymethyl cellulose (CMC LV) are being utilized in this research to produce high-performance, low-solid water-based drilling fluids (WDFs). Rheological and filtration behaviors of GO/XG/CMC LV-WDF were investigated as a function of GO, XG, and CMC LV at low concentrations (0.0-0.3% w/w) and atmospheric conditions. According to the findings, GO improved the rheological and filtration capabilities of the WDF. By adding 0.15 wt % GO, shear stress could be doubled, especially at a high shear rate of 1022 s-1. The plastic viscosity of the fluid could be expanded from 6 to 13 centipoise, and a fluid loss of 8.7 mL over 30 min was observed during the API fluid test, which would be lower than the suggested fluid loss value (15.0 mL) for water-based mud. At the same concentration of XG and CMC LV, XG had a more significant influence on rheological characteristics in the presence of GO. Adding 0.3 wt % XG could increase fluid shear stress from 20.21 to 30.21 Pa at a high shear rate of 1022 s-1. In contrast, CMC LV had more impact on filtration properties, acting as a filtration control agent by decreasing the API fluid loss of fluid from 21.4 to 14.2 mL over 30 min. The addition of XG and CMC LV to the GO solution may influence the microstructure of the filter cake, resulting in a tree-root morphology. Indeed, in the GO/CMC LV solution, the individual platelets may bind together, form a jellyfish shape, and block the micropores. The incorporation of CMC LV helped develop compact filter cakes, resulting in excellent filtration. Five rheological models were employed to match the fluid parameters quantitatively. The Herschel-Bulkley model outperformed the other models in simulating fluid rheological behavior. The findings of this study can be utilize to provide low-cost, stable, and environmentally compatible additives for drilling low-pressure, depleted, and fractured oil and gas reservoirs." @default.
- W3209407788 created "2021-11-08" @default.
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- W3209407788 date "2021-10-28" @default.
- W3209407788 modified "2023-10-03" @default.
- W3209407788 title "Rheological Behavior and Filtration of Water-Based Drilling Fluids Containing Graphene Oxide: Experimental Measurement, Mechanistic Understanding, and Modeling" @default.
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- W3209407788 cites W1974415187 @default.
- W3209407788 cites W1975786869 @default.
- W3209407788 cites W1986288580 @default.
- W3209407788 cites W1986586568 @default.
- W3209407788 cites W1991829201 @default.
- W3209407788 cites W1993466818 @default.
- W3209407788 cites W2005520121 @default.
- W3209407788 cites W2007502852 @default.
- W3209407788 cites W2011900832 @default.
- W3209407788 cites W2018356326 @default.
- W3209407788 cites W2019555520 @default.
- W3209407788 cites W2023574587 @default.
- W3209407788 cites W2031007380 @default.
- W3209407788 cites W2033416808 @default.
- W3209407788 cites W2038117723 @default.
- W3209407788 cites W2040358967 @default.
- W3209407788 cites W2041309423 @default.
- W3209407788 cites W2044441921 @default.
- W3209407788 cites W2050069453 @default.
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- W3209407788 cites W2073496397 @default.
- W3209407788 cites W2073948268 @default.
- W3209407788 cites W2075484771 @default.
- W3209407788 cites W2081365757 @default.
- W3209407788 cites W2082730114 @default.
- W3209407788 cites W2092080862 @default.
- W3209407788 cites W2095009119 @default.
- W3209407788 cites W2095541742 @default.
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- W3209407788 cites W2105163222 @default.
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- W3209407788 cites W2146564548 @default.
- W3209407788 cites W2153245469 @default.
- W3209407788 cites W2154086720 @default.
- W3209407788 cites W2158097746 @default.
- W3209407788 cites W2176803326 @default.
- W3209407788 cites W2260245921 @default.
- W3209407788 cites W2279901324 @default.
- W3209407788 cites W2280785123 @default.
- W3209407788 cites W2324151055 @default.
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- W3209407788 cites W2339021719 @default.
- W3209407788 cites W2341851173 @default.
- W3209407788 cites W2482246608 @default.
- W3209407788 cites W2514140386 @default.
- W3209407788 cites W2514587584 @default.
- W3209407788 cites W2598446438 @default.
- W3209407788 cites W2601092696 @default.
- W3209407788 cites W2743161031 @default.
- W3209407788 cites W2763650491 @default.
- W3209407788 cites W2773312767 @default.
- W3209407788 cites W2778335190 @default.
- W3209407788 cites W2787771153 @default.
- W3209407788 cites W2890940368 @default.
- W3209407788 cites W2912376260 @default.
- W3209407788 cites W2920416053 @default.
- W3209407788 cites W2987562059 @default.
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- W3209407788 cites W3168556773 @default.
- W3209407788 cites W3172806263 @default.
- W3209407788 cites W3175509498 @default.
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- W3209407788 doi "https://doi.org/10.1021/acsomega.1c04398" @default.
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- W3209407788 hasPublicationYear "2021" @default.
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