首页> 外文会议>The SPE Asia Pacific Oil and Gas Conference and Exhibition >Reservoir Simulation Challenges for Modeling a Thin Volatile Oil Rim With Large Gas Cap in the Poleng Field, Kujung-I Oil Reservoir, East Java Basin, Indonesia
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Reservoir Simulation Challenges for Modeling a Thin Volatile Oil Rim With Large Gas Cap in the Poleng Field, Kujung-I Oil Reservoir, East Java Basin, Indonesia

机译:储层模拟策划薄挥发油轮辋与大型气体帽,在波峰田,Kujung-I储油盒,东爪哇船坞,印度尼西亚

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摘要

This paper explores the difficulties in modeling an oil rim with A large gas-cap using black-oil and compositional formulations. The example is from the Poleng field located in the Poleng Block, East Java Basin, Indonesia. This reservoir is a reefal carbonate system with a limited aquifer within the Kujung-I interval. Production from the field commenced in 1975, was suspended in 1978 and re-activated by Kodeco in 1998. In 2002-03, a full-field study was conducted to re-evaluate the OOIP and OGIP and investigate future development options such as booster compression, gas and/or water injection, workovers, and infill wells. For this study, a new reservoir simulation model was developed based upon new/updated data. Two fluid PVT models (modified black oil and compositional) were also developed. At the start of the study, the operator felt that compositional formulation might be needed for modeling the gas injection processes. However, most of the work was performed using the modified black oil model because of computational speed consideration. The history match process showed that many simulation layers (grid blocks) were required to match the wells near the fluid contacts. Grouping some components in the compositional model was helpful to reduce run time, but the resulting equations of state (EOS) were generally not reliable for both the gas-cap and oil zones.
机译:本文探讨了使用黑色油和组成制剂用大型气帽建模油轮辋建模的困难。该示例来自于印度尼西亚东爪哇盆地的波尔格街区的波峰领域。该储层是一种含有有限含水层的含有有限的含水层的含水层。该领域的生产于1975年开始,于1978年被暂停,并于1998年被KodeCo重新激活。2002 - 03年,进行了全面研究,以重新评估ooIP和OGIP,并调查助推器压缩等未来的发展选择,天然气和/或注水,讨论和填充井。对于本研究,基于新/更新的数据开发了一种新的储层仿真模型。还开发了两种流体PVT模型(改性黑油和组成)。在研究开始时,操作员认为可能需要组合物制剂来建模气体注入过程。然而,由于计算速度考虑,使用改进的黑色油模型进行大部分工作。历史匹配过程表明,需要许多模拟层(栅格块)匹配流体触点附近的孔。将一些组件分组在组合模型中有助于减少运行时间,但是对于气盖和油区,所得到的状态方程(EOS)通常不可靠。

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