有限数据下凝析PVT流体建模的理论和方法特点

O. Burachok, D. Pershyn, O. Kondrat, S. Matkivskyi, Y. Bikman
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摘要

在乌克兰的第聂伯-顿涅茨盆地发现的大多数凝析气藏,其特征是组分有限,最高可达C5+,通过非平衡态(即所谓的微分凝析PVT实验)研究相行为,再加上凝析油产量分配到单井的不确定性,使得结果无法直接应用于现代PVT建模软件。提出了基于Engler蒸馏试验(ASTM86)拟成分定义与CVD实验液体饱和度曲线合成相结合的新方法,并成功应用于研究区不同凝析气藏。根据需要,对出口黑油PVT配方的单细胞仿真模型应用物料平衡法,进一步对PVT模型进行质量控制。事实证明,该方法可用于模拟第聂伯-顿涅茨盆地多个凝析气藏,其潜在凝析产量从30到700 g/m3不等,并以108和536 g/m3的两种储层流体为例。与历史观测值相比,数值模拟研究的结果在工程精度范围内。调查表明,在没有详细的流体成分或没有必要的实验室实验的情况下,可以建立具有代表性的流体模型。通过单单元构建的物料平衡型数值模拟,可以有效地验证和定量分析PVT模型。然而,适当的流体取样和PVT细胞实验室实验仍然是精确的储层流体表征和状态方程(EOS)建模的主要要求。
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Theoretical and Methodological Features for Gas-condensate PVT Fluid Modelling with Limited Data
Majority of gas-condensate reservoir discoveries in Dnieper-Donets Basin (Ukraine), is characterized by limited composition only up to C5+, phase behavior studied by non-equilibrium, so called differential condensation PVT experiment, combined with the uncertainty in condensate production allocation to individual wells, makes the direct application of the results in modern PVT modeling software not possible. The new method, based on the Engler distillation test (ASTM86) for definition of pseudo-components combined with synthetic creation of liquid saturation curve for CVD experiment, was proposed and successfully applied for different gas-condensate reservoirs in the area of study. The quality control (QC) of the PVT model is further performed by applying material-balance method on a single-cell simulation model for exported black-oil PVT formulation when needed. The method proved being useful for modeling of multiple gas-condensate reservoirs of Dnieper-Donets Basin with different potential condensate yields varying from 30 to 700 g/m3 and as an example presented for two reservoir fluids with 108 and 536 g/m3. Results of numerical simulation studies were within the engineering accuracy in comparison to historically observed values. The investigation showed that a representative fluid model can be create in the cases when no detailed fluid composition or required laboratory experiments are available. PVT model can be efficiently validated and QC-ed by performing material-balance type numeric simulation constructed with one cell. However, the proper fluid sampling and PVT cell laboratory experiments are still major requirements for precise reservoir fluid characterization and equation of state (EOS) modeling.
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