利用集成生产模型优化Jansz-Io干线Next项目

M. Barzi, Ewen Siu Ming Sze
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引用次数: 0

摘要

雪佛龙运营的Gorgon资产是澳大利亚最大的单一资源项目,拥有一系列海上气田,通过两条干线(Gorgon和Jansz-Io)向巴罗岛的三列、15.6 MTPA的液化天然气厂和300 TJ/D的国内天然气厂供应天然气。Gorgon将是一个遗留项目,预计将从回填气田开发天然气资源中生产数十年。为了实现资产的价值,选择正确的项目并在正确的时间执行它们是至关重要的。Greater Gorgon Integrated Production model (IPM)是由雪佛龙澳大利亚天然气供应团队代表Gorgon合资企业(雪佛龙、埃克森美孚、壳牌、大阪天然气、东京天然气和JERA的澳大利亚子公司)开发的,专门用于优化地下和地面价值链。它集成了油藏、油井和海底生产网络,能够对各种投资组合级别的开发和规划方案进行严格评估。本文重点研究了Gorgon二期(GS2)项目开发后如何维持生产的关键决策,其中Jansz-Io油田是Jansz-Io油田大规模枯竭驱动的初始供应干线。为了做出这一关键决策,使用INTERSECT (IX) IPM耦合模型进行了广泛的评估,以评估Jansz-Io压缩(J-IC)概念(浮动平台与海底压缩)。IX- ipm模型包括详细的IX动态模拟或简化的物质平衡(MBAL)油藏,以及一个详细的生产系统,该系统可以捕获全压力液压系统及其复杂的相互作用。使用IX-IPM模型,采用了系统的阶梯方法,从最小设施概念开始,然后依次增加更多功能(电力、容量、相位和回填场连接),并量化它们的增量效益。这样可以全面了解压缩模型的压力水力性能和每个步骤的各种价值权衡。采用了一种适合目的的固定功率压缩模型来开始楼梯评估。一旦选择海底压缩,随着评估的成熟,采用供应商压缩机性能曲线进行更严格的建模。总体而言,事实证明,Greater Gorgon耦合IX-IPM模型在J-IC概念选择的评估中非常宝贵,并支持2021年J-IC的最终投资决策(FID)。耦合IX-IPM模型不断改进,具有更高的工程分辨率和额外的生产历史,以支持更广泛的Gorgon资产决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimising the Jansz-Io Trunkline Next Project Using Integrated Production Modelling
The Chevron-operated Gorgon asset is the largest single resource project in Australia, with a portfolio of offshore gas fields to supply gas via two trunklines (Gorgon and Jansz-Io) to a three-train, 15.6 MTPA LNG plant and a 300 TJ/D domestic gas plant on Barrow Island. Gorgon will be a legacy project, with decades of production anticipated from the development of backfill fields gas resources. To realise the value of the asset, it is critical to select the right projects and execute them at the right time. Greater Gorgon Integrated Production Modelling (IPM) has been developed by Chevron Australia's gas supply team on behalf of the Gorgon Joint Venture (Australian Subsidiaries of Chevron, ExxonMobil, Shell, Osaka Gas, Tokyo Gas and JERA) to specifically enable optimisation of both the subsurface and surface value chain. It integrates reservoirs, wells, and subsea production networks to enable rigorous assessment of various portfolio-level development and planning scenarios. The focus of this paper is on the Jansz-Io trunkline, which is initially supplied by the massive depletion drive Jansz-Io field, and the key decision of how to maintain production post development of the Gorgon Stage 2 (GS2) project. To inform this key decision, extensive evaluation was conducted using coupled INTERSECT (IX) IPM model to assess Jansz-Io Compression (J-IC) concepts (floating platform vs subsea compression). The IX-IPM model includes either detailed IX dynamic simulation or simplified material balance (MBAL) reservoirs, and a detailed production system that captures the full pressure hydraulics and their complex interactions. Using this IX-IPM model, a systematic staircase approach was applied, starting with a minimum facility concept, before sequentially adding more functionalities (power, capacity, phasing and backfill fields tie-in) and quantifying their incremental benefits. This enabled comprehensive understanding of the compression model's pressure hydraulic performance and various value trade-offs at each step. A fit-for-purpose, fixed power compression model was implemented to commence the staircase assessment. Once subsea compression was selected, and as the assessment matured, vendor compressor performance curves were adopted for more rigorous modelling. Overall, the Greater Gorgon coupled IX-IPM model has proved to be invaluable in the assessment of the J-IC concept select and supported the Final Investment Decision (FID) on J-IC in 2021. The coupled IX-IPM model is continually refined with greater engineering resolution and additional production history to support the wider Gorgon asset decisions.
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