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- W1964084046 abstract "Abstract A new generation of guar gum is produced in a manner that provides high crosslinked fluid viscosity. The ultra high efficiency of these polymers enables polymer concentration (loading) to be reduced without sacrificing essential fracturing fluid properties such as rheological performance, proppant transport and fluid loss control. Reduced polymer loading also provides enhanced clean-up allowing for better utilization of fracture length, as measured by lower flow initiation stresses, and higher proppant pack conductivity. These factors positively influence well productivity. These polymers are also more tolerant to both KCl and a wider range of mix waters. Field loadings of the new polymer typically range from 15 to 30 lb/1000 gal of water (i.e., 15 to 30 pptg), with most treatments ranging from 15 to 20 pptg. This paper will describe the results of rheological measurements made on low polymer crosslinked gels using steady shear. Proppant pack conductivity and regained permeability testing will also be presented. In particular, numerous treatments have been pumped into wells completed in the tight sands of the Unita, Piceance, Greater Green River and Wind River Basins of the Rocky Mountain province. Comparative post treatment analysis, utilizing basic indication techniques such as normalized production (e.g., gas production/ net pay) at fixed reference times (e.g., 30-day cumulative gas) will be presented. In addition, a more comprehensive analysis using well testing (drawdown) methods will also be included as a means to evaluate the benefits of using borate crosslinked fluids based on lower polymer loadings." @default.
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- W1964084046 date "2004-09-26" @default.
- W1964084046 modified "2023-09-25" @default.
- W1964084046 title "Reduced Polymer Based Fracturing Fluid: Is Less Really More?" @default.
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- W1964084046 doi "https://doi.org/10.2118/90851-ms" @default.
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