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MICROFLUID1C CHARACTERIZATION OF STEAM-BITUMEN INTERACTIONS DURING STEAM ASSISTED GRAVITY DRAINAGE OPERATIONS

机译:蒸汽辅助重力排水操作期间蒸汽沥青相互作用的微流体1C表征

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In-situ recovery of heavy-oil and bitumen is used when reserves are too deep underground for conventional surface mining technologies. Steam assisted gravity drainage (SAGD) is process in which two horizontal wells, one vertically 5m above the other, are drilled into an oil-rich region. Steam is injected into the reservoir from the top well, and an oil steam-condensate mixture is pumped out the production well. The aim of this research is to physically model a section of oil sand in a SAGD operation. An array of micropillars fabricated into a glass microfluidic chip is used to represent the grains of sand. The chip was positioned vertically so that gravity plays a dominate role in drainage. Steam was pumped into the chip, reducing the viscosity of the oil and allowing oil and steam to flow under gravity to the outlet. The position of the steam front and the micro-scale interactions of the steam and oil were recorded over time.
机译:当储物太深地下,用于传统的表面挖掘技术时,使用了批量油和沥青的原位恢复。蒸汽辅助重力排水(SAGD)是工艺,其中两个水平孔,一个垂直5m的另一个水平孔钻入富含油的区域。蒸汽从顶部井注入储存器中,并将油蒸汽冷凝物混合物泵出井。该研究的目的是在SAGD操作中物理地模拟一段油砂。制造成玻璃微流体芯片的一系列微毛虫用于代表沙子的颗粒。该芯片垂直定位,使得重力在排水中起着主导作用。蒸汽被泵入芯片中,降低了油的粘度并使油和蒸汽在重力下流入出口。随着时间的推移,记录蒸汽前沿的位置和蒸汽和油的微观相互作用。

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