首页> 外文会议>SPE International Conference and Exhibition on Formation Damage Control >Nanomaterials-Enhanced Hydrocarbon-Based Well Treatment Fluids Leiming Li and Sehmus Ozden, Aramco Services Company: Aramco Research Center-Houston;
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Nanomaterials-Enhanced Hydrocarbon-Based Well Treatment Fluids Leiming Li and Sehmus Ozden, Aramco Services Company: Aramco Research Center-Houston;

机译:纳米材料增强碳氢化合物井处理液Leiming Li和Sehmus Ozden,Aramco Services Company:Aramco Research Center-Houston;

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The introduction of water-based fracturing fluids to water-sensitive formations may cause formation damages and thereafter lower the production numbers. Due to the advantages such as low formation damage, good proppant suspending and carrying ability, good compatibility with water-sensitive formations, etc., the waterless, hydrocarbon-based fluids are routinely used in fracturing, sand control, coiled tubing cleanout, and other oilfield operations. To better generate fractures and place proppant, the phosphate esters-based gelled oil fluids have been preferred since they are more robust and cost-effective compared to other types of hydrocarbon-based fluids. Phosphate esters are commonly used with metal crosslinkers such as iron or aluminum compounds to form gelled oil fluids. Since phosphate esters may cause fouling in refinery equipment, the dosage should be reduced to the minimum but without compromising the fluid performance. A number of novel additives have been identified that could maintain or even enhance the rheological properties of the gelled hydrocarbon fluids with reduced usage of the phosphate esters. When doped with the novel functional nanomaterials, the rheological properties of the gelled hydrocarbon-based fluids were enhanced from room temperature to 250°F or above. The selected nanomaterials could have van der Waals-like forces, thus strengthening the three-dimensional network of the metal-crosslinked phosphate esters in the gelled hydrocarbon fluid. This way, the overall viscosity of the hydrocarbon-based fluid could increase with lower amount of phosphate esters. For example, the addition of 30ppt (pounds per thousand gallons) of additive-A synergistically improved the viscosity of the gelled oil fluid by about 73% compared to the baseline gelled fluid that did not contain the additive. With additive-A at 30ppt, the amount of the phosphate esters in the fluid could be reduced by 25% without affecting the fluid performance. Besides additive-A, other types of functional nanomaterials including additive-B, additive- C, and additive-D were all found to enhance the rheological properties of the gelled hydrocarbon fluids by as much as about 45%. The novel gelled hydrocarbon fluid formulas were successfully applied with the crude oil from the field, resulting in viscosity boosts up to about six times. Further discussions about the enhancing behaviors and mechanisms of the selected novel additives in the gelled hydrocarbon fluids and the laboratory test results will be presented in detail.
机译:将水基压裂液引入水敏形成可能导致形成损坏,然后降低生产数。由于低形成损坏,良好的支撑剂悬挂和携带能力,与水敏感的结构等良好的兼容性,无水,烃类流体常规用于压裂,砂,卷绕管清洁和其他油田运营。为了更好地产生裂缝和置位支撑剂,磷酸酯的凝胶化油液已经是优选的,因为与其他类型的烃类流体相比,它们更鲁棒且成本效益。磷酸酯通常与金属交联剂如铁或铝化合物一起使用,以形成凝胶化油液。由于磷酸酯酯可能导致炼油设备中的污垢,因此剂量应降低到最小但不影响流体性能。已经鉴定了许多新添加剂,其可以维持或甚至增强凝胶化烃流的流变性质,以降低磷酸酯的使用。当掺杂有新型官能纳米材料时,从室温至250°F或更高的凝胶化烃类流体的流变性质。所选的纳米材料可以具有范德瓦尔匹布状力,从而强化凝胶烃流体中金属交联磷酸酯的三维网络。这样,烃类流体的整体粘度可以随着磷酸酯的较低量增加而增加。例如,与不含添加剂的基线凝胶化流体相比,添加30ppt(每千加仑)的添加剂(磅/磅)的添加剂 - 凝胶化油液的粘度约73%。对于30ppt的添加剂-A,流体中的磷酸酯的量可以减少25%而不会影响流体性能。除了添加剂-A之外,还发现包括添加剂-B,添加剂-C和添加剂-D的其他类型的功能性纳米材料,以增强凝胶化烃流的流变性能多达约45%。用来自场的原油成功涂覆新型凝胶化烃流体配方,导致粘度升高至约六次。进一步讨论凝胶化烃流体中所选新型添加剂的增强行为和机制以及实验室测试结果。

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