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Ultra-High Density Oil-Based Drilling Fluids Laboratory Evaluation and Applications in Ultra-HPHT Reservoir

机译:超高密度油的钻井液实验室评价和超高HPHT储层应用

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Global energy demand has driven petroleum industry to develop hydrocarbon resources from extremely harsh formations. Ultra-high density drilling fluids are critical to successful drilling and completion practices in all of these wells. In this paper, potential weighting materials were systematically evaluated and screened to accomplish an ultra-high density oil-based drilling fluid system (19.62 to 22.121b/gal) aimed to utilize in ultra HPHT conditions (>30000psi and >410°F). Potential high-density weighting materials were evaluated. Properties (pure density, particle size/ distribution, surface area etc.) were evaluated and compared. Special treatment was conducted to optimize properties of weighting materials. HPHT filtration tests under static and dynamic conditions were conducted at higher than 410°F and 300 psi. Real cores with an average porosity of 19% and an average permeability of 50 md were used in the filtration tests. Rheological properties, sag tendency, the volume of filtrate, and the filtrate cake characterization was measured before and after heating at 410°F for 16 hours. Results revealed that ultra-micro manganese and ilmenite complex after suitable surface treatment could act as an ideal weighting material than ultra-pure barite or other materials, which could fail in rheology and sag measurement with such high temperature and density. Viscosity and filtration analysis confirmed the stability and reliability of this novel ultra-high density oil-based drilling fluid. This study developed a challenged drilling fluid system under critical conditions, as well as established a systematical laboratory evaluation and screening procedure of weighting materials and contributed recommendations on how to utilize it in the fields.
机译:全球能源需求驱动了石油工业,从极其恶劣的地层开发碳氢化合物资源。超高密度钻井液对于所有这些井中的成功钻井和完成实践至关重要。在本文中,系统地评估和筛选潜在的加权材料,以实现超高密度的油基钻井液(19.62至22.121b / gal),旨在利用超HPHT条件(> 30000psi和> 410°F)。评估潜在的高密度加权材料。评估和比较性质(纯密度,粒度/分布,表面积等)。进行特殊处理以优化加权材料的性质。在静态和动态条件下的HPHT过滤试验在高于410°F和300psi下进行。在过滤试验中使用平均孔隙率为19%的实际芯,50 md的平均渗透性。在在410°F下加热16小时之前和之后测量流变性质,下垂趋势,滤液的体积和滤饼表征。结果表明,合适的表面处理后的超微微锰和钛铁矿复合物可以作为比超纯的重晶石或其他材料的理想加权材料,其在流变学中不能通过流变和下垂测量,并且具有如此的高温和密度。粘度和过滤分析证实了这种新型超高密度油基钻井液的稳定性和可靠性。本研究在临界条件下开发了一个挑战的钻井流体系统,并建立了加权材料的系统实验室评估和筛选程序,并有关如何在田地中使用它的建议。

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