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Miscible WAG-CO2 Light Oil Recovery from Low Temperature and High Pressure Heterogeneous Reservoir

机译:低温和高压异质水库的混溶性摇头 - 二氧化碳储存

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Brazilian pre-salt oils should contain a variable concentration of dissolved CO2,which is produced in the gas phase.A sustainable production of these oils requires a destination for the produced gas.As offshore fields have limitations associated to gas manipulation,storage and exportation,miscible CO2 flooding is an Enhanced Oil Recovery(EOR)method with great potential to be employed in pre-salt reservoirs.In fact,miscible CO2 injection in highly heterogeneous reservoirs should increase the oil production.As CO2 flooding is related to high gas mobility,an alternative EOR method is water-alternating-gas injection (WAG).The WAG with CO2(WAG-CO2)is advantageous in this scenario due to the sea water available apart from enabling the control of gas mobility.In addition,using CO2 as an injection fluid is a viable solution for the GHG problem.Before implementation of WAG injection in a field,the prediction of the oil production through reservoir simulation is recommended.Simplified Black-Oil modeling is not appropriate to simulate a reservoir with light oil and miscible CO2 injection.The rigorous simulation of WAG injection requires a compositional model.Also,hysteresis of relative permeability should be implemented in the simulation model to consider the cyclic hysteresis of the three-phase relative permeability.The case studied has analogous characteristics of pre-salt reservoirs such as light oil with 8%molar of CO2 and initial reservoir conditions of low temperature and high pressure.The phase behavior of the oil and CO2 mixture is represented by an Equation of State that contemplates the swelling resulting from the CO2 dissolution in the oil.As hysteresis modeling requires some uncertain experimental parameters,a sensitivity analysis is carried out to determine the influence on oil recovery.The importance of using the reservoir simulation as a tool to predict the oil recovery before implementing WAG injection in practice is evidenced.It also demonstrated that the sensitivity analysis of the required uncertain parameters to consider the hysteresis is a viable approach to give the pessimistic and optimistic scenarios of light oil recovery prediction under WAG injection.
机译:巴西预盐油应含有可变浓度的溶解二氧化碳,其在气相中产生。可持续生产这些油,要求生产的气体目的地。近海场具有与气体操纵,储存和出口相关的限制。可混溶的二氧化碳洪水是一种增强的储蓄(EOR)方法,具有较大的盐储层潜力。事实上,在高度异质水库中的混溶性二氧化碳注射应该增加石油产量。二氧化碳洪水与高气体流动性有关,替代的EOR方法是水交交易气体注射(WAG)。由于除了能够控制气体移动性之外的海水,具有二氧化碳(WAG-CO2)的摇摆在这种情况下是有利的。在这种情况下,由于能够控制气体移动性。在此外,请使用CO2作为注射液是GHG问题的可行解决方案。在一个领域中的摇头喷射的实施方面,推荐通过储层模拟预测油生产。提示黑油模拟具有轻油和混溶性二氧化碳注射的储层不合适。摇头注射的严格模拟需要组成模型。在模拟模型中,应在模型中实施相对渗透性的滞后,以考虑三相的循环滞后所研究的案例具有诸如轻质油的储存储存器等壳体的壳体,其具有8%摩尔的二氧化碳和初始储存条件的低温和高压。油和CO2混合物的相行为由等式表示考虑由IL2中的CO 2溶解引起的肿胀的状态需要一些不确定的实验参数,进行敏感性分析以确定对石油回收的影响。使用储层模拟作为预测工具的重要性在实践中实施摇摆注射之前的储油在实施前。它还证明了感觉考虑滞后所需的不确定参数的衡量分析是一种可行的方法,以便在摇头注射下给出轻质油回收预测的悲观和乐观情景。

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