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An investigation on economy and COSubscript2/Subscript emission of water alternating steam process (WASP) using response surface correlation

机译:水面交替蒸汽过程(WASP)的经济性和CO 2 排放的响应面相关性研究

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In steamflooding, the steam tends to move toward the upper portion of the reservoir due to the gravitational effect causing poor drainage in the lower section. This causes the steam to breakthrough to the production well early. The water alternating steam process (WASP) often provides a solution to the problem. However, studies on WASP are found very limited despite the fact that this process is sensitive to the operating conditions. By investigating the WASP using response surface correlation, the factors governing steam injections operations are evaluated. To achieve the maximum net present value (NPV), several operating conditions are investigated. The side effect of gas fuel burning in the steam generation, i.e., CO2 emission, is considered in selecting the optimum operating condition. As illustrated by reservoir simulation results, if the economy is prioritized and oil price is 45?$/barrel, the optimum case is achieved in which the WASP-start is 3.0?years, the WASP-cycle is 3.5?months, and the steam/water injection rate is 141?m3/day. The resulting NPV is 14.1?MM$, and the CO2 emission is 28.53?×?103?tonnes.
机译:在蒸汽驱中,由于重力作用,蒸汽趋向于向储层上部移动,从而导致下部排水不良。这导致蒸汽尽早渗透到生产中。水交替蒸汽过程(WASP)通常可以解决该问题。但是,尽管该过程对操作条件敏感,但对WASP的研究却非常有限。通过使用响应面相关性研究WASP,可以评估控制蒸汽注入操作的因素。为了达到最大净现值(NPV),研究了几种工作条件。在选择最佳操作条件时,应考虑在蒸汽产生中燃烧气体燃料的副作用,即二氧化碳的排放。如油藏模拟结果所示,如果优先考虑经济,并且油价为45美元/桶,则可以实现以下最佳情况:WASP启动时间为3.0年,WASP周期为3.5天,蒸汽/注水速率为141?m3 /天。产生的NPV为14.1?MM $,CO2排放量为28.53?×?103?吨。

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