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Feasible Evaluation of Natural Gas Floods in Wennan Low Permeability Reservoirs

机译:Wennan低渗透水库的天然气洪水可行评价

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This presentation provides a technical overview of a project that evaluated the feasibility of natural gas injection in a Wennan low-permeability sandstone reservoir. An advantage of gas injection is high injectivity. Relative high injectivity combining with near miscible condition between injection gas and reservoir fluid offers a potentially attractive prospect in the Wennan low-permeability reservoir. Zhongyuan Oil Field and Southwest Petroleum Institute(SWPI) sponsored the project at Wennan field, including reservoir characterization, experiments,flow simulation,and nitrogen injection, which proved that a high gas injectivity and reservoir pressure was 44.35 MPa. Main attention in this paper is paid to experimental research, including the regular PVT test. The slim-tube tests were used to determine minimum enriched gas composition(MMC) for miscible displacement at present reservoir pressure. The experiment was conducted at pressure 44.35 MPa and 393K. These slim-tube tests showed that a lean gas with reservoir fluids can reach near-miscible condition. Only a few LPG are needed to enrich the the lean gas.Then a set of experiments to quantify displacement efficiency and provide parameters for composition simulations.The first experiment evaluated the recovery efficiency in sandstone by enriched gas displacements, and the second looked at the recovery in sandstone by lean gas. These experiments showed the enriched gas breakthrough as 0.92HCPV in the typical miscible condition, final recovery to be 87.01%, and lean gas breakthrough(0.437HCPV) with recovery at 65.29%, as in immiscible displacement.However,substantial recovery after breaking(0.5HCPV with final recovery 85.29%) suggests an efficient extraction of intermediate components in the typical volatile oil. Additionally, the experiments in the project was conducted to evaluate water flooding and WAG flooding. WAG flooding showed that WAG could significantly increase oil recovery,but the pressure difference would increase greatly when gas was injected. Therefore,WAG is not suggested in Wennan oilfield. Further investigation was made at field with CMG 3D compositional simulation. Compositional simulation suggested slow breakthrough and high recovery at the Wennan field. These evaluations will lead to a pilot test in the Wennan lowpermeability reservoir.
机译:本演示文稿提供了一个项目的技术概述,该项目评估了各种渗透砂岩储层中天然气注射的可行性。气体注入的优点是高注射性。与注射气体和储层流体之间的近紊乱条件相对的相对高再现性在Wennan低渗透储层中提供了具有潜在有吸引力的前景。中原油田和西南石油研究所(SWPI)赞助了Wennan领域的项目,包括储层表征,实验,流动模拟和氮气注射,这证明了高气体的重新注射和储层压力为44.35MPa。本文的主要注意力为实验研究,包括常规PVT测试。用于在目前储层压力下可混溶性位移的最小富集气体组合物(MMC)来确定最小富集的气体组合物(MMC)。实验在压力44.35MPa和393K处进行。这些纤细管测试表明,具有储层液体的贫气体可达到近可混溶的条件。需要少量LPG来丰富瘦气体。该一套实验来量化位移效率并为组合模拟提供参数。第一个实验通过富集的气体位移评估了砂岩中的恢复效率,第二个实验在恢复时评估了砂岩中的恢复效率瘦气体砂岩。这些实验表明,富含0.92HCPV的富含气体突破,最终回收率为87.01%,贫气体突破(0.437HCPV),恢复为65.29%,如不混溶的位移。然而,断裂后,有实质性恢复(0.5 HCPV具有最终回收率85.29%)表明典型挥发油中的中间组分有效提取中间组分。此外,该项目的实验是进行评估水利和摇摆洪水。摇滚洪水表明,摇摆可能会显着提高油回收,但在注射气体时,压力差会大大增加。因此,在Wennan Oilfield没有建议摇摆。通过CMG 3D成分模拟在现场进行进一步调查。作曲模拟建议在Wennan领域的缓慢突破和高回收。这些评估将导致Wennan Lowperemility Chockoir中的试验试验。

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