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Enhancing condensate recovery from gas condensate reservoirs through gas injection

机译:通过注气加强从凝析气藏中回收凝析油

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Gas reservoirs can be classified into dry gas reservoirs, wet gas reservoirs and Gas condensate reservoirs. In gas condensate reservoirs, the reservoir temperature lies between the critical temperature and the cri-condentherm. The gas will drop out liquid by retrograde condensation in the reservoir, when the pressure falls below the dew point. This heavy part of the gas has found many application in industry and also in daily life and by remaining in reservoir not only this valuable liquid is lost but also its accumulation will result in forming a condensate bank near the well bore region which makes a considerable reduction in well productivity. In this paper, gas injection will be studied in a gas condensate reservoir to increase the recovery factor moreover the capability of different injection gases (CO, N, CH and separator gas) will be compared through different injection schemes. The injection schemes which will be considered are: different injection rates, different injection pressures and different injection durations. We think that the response of the reservoir in different cases will be different but that injection of all of them can increase the condensate recovery. As many parameters can affect the decision of selecting the injection scheme, other than the gas and condensate recovery factor, doing an economical evaluation is inevitable to take them all into account and determine the best one. In this paper, the efficiency of different schemes of gas injection and gas recycling in condensate recovery from a gas condensate reservoir, through compositional simulation has been studied and compared. The effect of changing injection rate, injection pressure and injection duration has been investigated by three injection gases (N, CO, CH) and gas recycling. The appropriate and optimum case can be selected considering the results of the simulation work and doing an economical evaluation, ta- ing into account all the parameters such as: the price of the gas and condensate, the price of the injection gases and the cost of the facilities needed in each scheme with regard to the present level.
机译:气藏可分为干气藏,湿气藏和凝析气藏。在气体冷凝水储层中,储层温度介于临界温度和cri-dentherm之间。当压力降至露点以下时,气体会通过储罐中的逆向凝结而掉出液体。大部分气体已在工业以及日常生活中得到了广泛应用,并且由于残留在储层中,不仅损失了这种宝贵的液体,而且其积聚将导致在井筒区域附近形成凝结水合物,从而大大减少了凝结物的产生。生产率高。在本文中,将在凝析气藏中研究注气,以提高采收率,此外,还将通过不同的注入方案比较不同注入气体(CO,N,CH和分离器气体)的能力。将考虑的喷射方案为:不同的喷射速率,不同的喷射压力和不同的喷射持续时间。我们认为,在不同情况下,油藏的响应会有所不同,但注入全部油藏可以增加凝结水的回收率。由于除气体和冷凝物回收系数外,许多参数都会影响选择喷射方案的决策,因此,进行经济评估是不可避免的,要考虑所有因素并确定最佳方案。本文通过组成模拟研究和比较了不同注气和回气方案在凝析气藏凝析气回收中的效率。通过三种注入气体(N,CO,CH)和气体再循环,研究了改变注入速率,注入压力和注入持续时间的影响。可以根据模拟工作的结果并进行经济的评估来选择合适的最佳情况,同时考虑所有参数,例如:气体和冷凝液的价格,注入气体的价格以及生产成本就目前水平而言,每个计划所需的设施。

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