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Phase Behavior of a Gas-Condensate/Water System

机译:冷凝水系统的相态

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Gas-condensate reservoirs are an essential part of Saudi Arabia's hydrocarbon resources. A good understanding of the effect of water on the phase-behavior properties of these hydrocarbons is essential for accurately forecasting the performance of the reservoirs with numerical simulators. In addition, the scaling and corrosion tendencies of the produced brine are strongly influenced by mass transfer with the hydrocarbon phase. This paper presents unique experimental phase-behavior data for a typical Saudi Arabian gas-condensate three-phase (aqueous/ condensate/gas) system. The objective of this work is to quantify the effect of the aqueous phase on gas-condensate fluid properties. The results show that appreciable amounts of carbon dioxide and methane are partitioned from the gas-condensate phase into the aqueous phase. Another important observation is the mass transfer of water into the condensate phase. The mass transfer between the condensate and aqueous phases results in a slight decrease in the gas/condensate ratio (GCR). The carbon dioxide in solution makes the brine acidic and can dissolve carbonate minerals from the formation (e.g., calcium carbonate). In addition, the acidic or sour brine will be quite corrosive. The experimental results are compared with equation-of-state (EOS) and other correlations published in the literature.
机译:凝析气藏是沙特阿拉伯碳氢化合物资源的重要组成部分。充分了解水对这些烃的相行为特性的影响,对于使用数值模拟器准确预测储层的性能至关重要。另外,所产生的盐水的结垢和腐蚀趋势受到与烃相的传质的强烈影响。本文介绍了典型的沙特阿拉伯凝析气三相(水/凝析气/燃气)系统的独特实验相行为数据。这项工作的目的是量化水相对凝析气流体性质的影响。结果表明,相当数量的二氧化碳和甲烷从气体冷凝物相分配到水相中。另一个重要的观察结果是水向凝结相的质量转移。冷凝水相之间的传质导致气体/冷凝水比(GCR)略有下降。溶液中的二氧化碳使盐水呈酸性,并且可以溶解地层中的碳酸盐矿物(例如碳酸钙)。此外,酸性或酸性盐水会产生很大的腐蚀性。将实验结果与状态方程(EOS)和文献中发表的其他相关性进行了比较。

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