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Measurement and modeling of methane dissolution in synthetic liquids applied to drilling fluid formulation for deep and ultradeep water wells

机译:用于深井和超深井的钻井液配方的合成液中甲烷溶解度的测量和建模

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Most of the Brazilian oil and gas reserves are located in offshore fields.There is also a great production potential in offshore reservoirs in deep and ultradeep water depths.The drilling scenario at those depths is quite complex and the risk of blowouts should be mitigated.A well control problem would incur in loss of human lives,equipment and catastrophic environmental damages.In order to overcome technical and environmental restrictions,synthetic liquids have been applied in the formulation of drilling fluids.Synthetic based drilling fluids show excellent lubricity and shale stabilization characteristics and may be the only option when drilling in high temperature and high pressure environments.The better understanding of the interaction between formation gas and a synthetic based drilling fluid during a kick detection and circulation situation would contribute to safely and economically drill the offshore wells.The present work involves PVT measurements and thermodynamic modeling of three mixtures of methane and organic liquids(n-paraffm,ester and a iso-paraffin;n-parafSn mixture),currently applied in drilling fluid systems for deep and ultradeep water drilling,in Campos Basin(Rio de Janeiro,Brazil).The measurement of thermodynamic properties of the methane-liquid mixtures,such as bubble point pressure,solubility,oil formation volume factor,gas formation volume factor and liquid density,were performed for 70 and 90 deg C temperatures.The measurements were conducted in two different apparatuses;an Hg system and an Hg-free PVT system.The thermodynamic modeling of the gas-liquid system was based on Krichevsky-Kasamovsky correction of Henry's law.The results showed that the precise accounting of formation gas solubility in the fluid under downhole conditions and during the kick circulation is a very important issue for safely drill deep and ultradeep water wells.
机译:巴西的大部分石油和天然气储量都位于近海油田,深水和超深水深处的海上油藏也有很大的生产潜力,这些深度的钻井方案非常复杂,应减少井喷的风险。井控问题将导致人员伤亡,设备损坏和灾难性的环境破坏。为了克服技术和环境限制,已将合成液体应用于钻井液配方中。合成基钻井液具有优异的润滑性和页岩稳定特性,并且可能是在高温和高压环境下进行钻井的唯一选择。更好地了解地层气与基于合成的钻井液在井涌探测和循环情况下的相互作用将有助于安全,经济地钻探海上钻井。工作涉及PVT测量和热力学建模甲烷和有机液体的三种混合物(正构烷烃,酯和异链烷烃;正构烷烃混合物),目前在坎波斯盆地(巴西里约热内卢)用于深水和超深水钻井的钻井液系统中。分别在70和90摄氏度温度下进行甲烷-液体混合物的热力学性质的测量,例如气泡点压力,溶解度,成油体积因子,产气体积因子和液体密度。气液系统的热力学建模基于亨利定律的Krichevsky-Kasamovsky校正,结果表明在井下条件下流体中地层气体溶解度的精确计算在井涌循环中,对于安全钻深水井和超深水井而言,这是一个非常重要的问题。

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