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Experimental study into the effectiveness of the partial gas cycling process in the gas-condensate reservoir development

机译:部分气体循环过程在凝析气藏开发中有效性的实验研究

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In this study a laboratory study was carried out with the purposes of estimating the effectiveness of the gas cycling process during gas-condensate reservoir development. Specific laboratory equipment was constructed to carry out an experimental investigation by modelling the gas injection and reservoir depletion process. Volumetric properties, fog up, liquid drop-out condition, and retrograde dew point pressures of gas-condensate fluids were investigated. The reservoir fluid was recombined based on samples from Azerbaijan natural gas-condensate reservoir. Results are describing gas injection effect on condensate/gas ratio and condensate recovery in each pressure step. These have provided an understanding on the influence of the retrograde dew point pressure on optimum gas injection stage. The analyses also assure that as condensate/gas ratio decreases continually during the gas injection process, which causes the reservoir fluid PVT characteristics to be changed accordingly furthermore the reservoir pressure can be depleted in order to vaporize the liquid phase and to maintain the reservoir fluid to be in a single phase state during the reservoir exploitation. It was seen to be closely related with retrograde dew point pressure and fog up pressures. Therefore, in terms of incorporating colloidal systems into the subject focusing more on the region between fogging up and retrograde condensation gave interesting results.
机译:在这项研究中,进行了一项实验室研究,目的是评估凝析气藏开发过程中气体循环过程的有效性。通过对注气和储层枯竭过程进行建模,建造了专门的实验室设备以进行实验研究。研究了气体凝析液的体积特性,起雾,液体脱落条件和逆行露点压力。根据来自阿塞拜疆天然气凝析气藏的样品对储层流体进行重组。结果描述了在每个压力步骤中注气对冷凝水/气体比率和冷凝水回收的影响。这些已经了解了逆行露点压力对最佳气体注入阶段的影响。分析还确保了在注气过程中冷凝水/气体比率不断降低,这会导致储层流体PVT特性发生相应的变化,此外,储层压力可以被消耗掉,以汽化液相并保持储层流体至在油藏开采过程中处于单相状态。它被认为与逆行露点压力和起雾压力密切相关。因此,就将胶体系统纳入对象而言,更多地关注起雾和逆行凝结之间的区域给出了有趣的结果。

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