Evaluation of Gas Generation Potential Using Thermal Maturity Modelling—The Katakolo Case: A Probable Pathway to Energy Transition

V. Makri, G. Panagopoulos, K. Nikolaou, S. Bellas, N. Pasadakis
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引用次数: 1

Abstract

It is evident that the increased focus on energy transition, will increase the demand for gas as it is the transitional fuel to the net zero CO2 emission era. The West Katakolo field is the only oil and gas discovery in Western Greece, and it is operated by Energean. The three offshore West Katakolo wells have defined both the oil and the gas zones, while onshore exploration wells have penetrated biogenic gas-saturated Plio-Pleistocene sands. This study assesses the gas generation potential of the local Plio-Pleistocene and Triassic sources using thermal maturity modelling based on the available legacy data, with limitations being addressed by running several case-scenarios. In conclusion, this study supports the generation of thermogenic and biogenic gas from the Triassic and Plio-Pleistocene sources respectively, demonstrating the importance of maturity modelling in hydrocarbon exploration, applied on the Katakolo case; a potential gas source to facilitate the energy transition in Greece.
利用热成熟度模型评价天然气生成潜力——Katakolo案例:能源转换的可能途径
很明显,对能源转型的日益关注将增加对天然气的需求,因为它是向净零二氧化碳排放时代过渡的燃料。West Katakolo油田是希腊西部唯一发现的石油和天然气,由Energean公司运营。West Katakolo的三口海上油井已经确定了油气带,而陆上勘探井则钻探了富含生物气的上新世-更新世砂岩。本研究利用基于现有遗留数据的热成熟度模型,评估了当地上新世-更新世和三叠纪气源的生气潜力,并通过运行几个案例场景来解决局限性。综上所述,本研究支持三叠系和上新世—更新世烃源岩分别生成热成因气和生物成因气,说明成熟度模拟在油气勘探中的重要性,并应用于Katakolo案例;这是促进希腊能源转型的潜在天然气来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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