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Reservoir Characterisation of the Miocene Reservoirs of the North Malay Basin, Malaysia-Thailand Joint Development Area (MTJDA)

机译:马来西亚 - 泰国联合开发区北马来盆地中新世储层的水库特征(MTJDA)

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The Cakerawala, Bulan, Bumi and Suriya gas fields in the MTJDA, northern Malay Basin form a major new development hub for the region, with an estimated total GIIP of 9 Tcf. These large assets are very early in their field life with only 300 Bcf of production from Cakerawala field so far. There has however already been significant (USD 1-2 billion) development investment. There is significant subsurface uncertainty due to geological complexities and a detailed, integrated data gathering and interpretation effort was necessary to better understand the asset. The impact of the study is a deeper understanding of the fields' potential and an insight into how to optimally develop these complex resources. This study covers many aspects of the reservoir characterisation process with examples from the North Malay Basin and has application in other complex fields. The subsurface geology comprises a thick interval (more than 7,000 ft) of stacked, clastic, fine grained, often clay-rich reservoirs, deposited in an upper delta plain to shallow marine environment. Significant challenges exist in developing these fields due to the large development area, thick zones of interest, large number of reservoirs and challenging depositional setting. There are also petrophysical issues to overcome, including fine scale reservoir heterogeneity, complex mineralogy and the presence of low-resistivity low-contrast (LRLC) pay. An improved understanding of the factors controlling reservoir quality was achieved by adopting a holistic and multidisciplinary approach. This included the integration of stratigraphic, depositional and lithofacies information along with mineralogical and pore system data. Key lessons learnt include the importance of acquiring good subsurface rock data and the construction of robust databases. The novel application of Lorenz plots and Winland R35 analysis calibrated to test data provided key rock quality and heterogeneity information for inclusion in geo-engineering models. The definition of LRLC reservoirs proved to be an important milestone which led to the development of a water saturation cut-off for gas-productive reservoirs. These findings are now being incorporated into our forward development strategies in Block A-18 and other assets. Success was achieved on a highly complex problem due to the application of an integrated, multi-disciplinary work flow.
机译:MTJDA的CakayAwala,Bulan,Bumi和Suriya气田,北马来盆地形成了该地区的主要新开发枢纽,估计总Giip为9 TCF。这些大型资产迄今为止,迄今为止仅由Cakerawala Field的300 BCF生产。然而,已有很大(1-2亿美元)的发展投资。由于地质复杂性和详细的,综合数据收集和解释努力有很大的地下不确定性是必要的,以更好地了解资产。该研究的影响是对田地潜力的更深入了解,并深入了解如何最佳地发展这些复杂资源。本研究涵盖了储层表征过程的许多方面,其中北马来盆地的实例并在其他复杂领域应用。地下地质包括厚的间隔(超过7,000英尺)的堆叠,碎屑,细粒,通常富含粘土的储存器,沉积在浅海洋环境的上层平原中。由于大型开发区,厚厚的兴趣区,大量水库和挑战性沉积设置,在开发这些领域时,存在重大挑战。还有剥落的问题来克服,包括细量储层异质性,复杂的矿物学和低电阻率低对比度(LRLC)支付。通过采用整体和多学科方法,实现了对控制水库质量的因素的改进了解。这包括分层,沉积和锂外信息的集成以及矿物学和孔隙系统数据。主要经验教训包括获取良好地下岩石数据和强大数据库构建的重要性。 Lorenz Plots和Winland R35分析的新颖应用校准测试数据提供了封装在地理工程模型中的关键岩石质量和异质性信息。 LRLC水库的定义被证明是一个重要的里程碑,导致了用于天然气生产储层的水饱和度切断的开发。这些调查结果现已纳入我们的前瞻性发展战略,块A-18和其他资产。由于应用综合,多学科工作流程,在高度复杂的问题上取得了成功。

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