Thermo-pressure coupling model for gas hydrate depressurization exploitation in South China Sea

IF 1.9 4区 工程技术 Q4 ENERGY & FUELS Energy Exploration & Exploitation Pub Date : 2024-08-06 DOI:10.1177/01445987241262057
Li Bin, Lu Jingan, Shen Kaixiang, Yu Yanjiang, Li Bo
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Abstract

The sediment type in the “Shenhu” sea area of the South China Sea is mud sediment, with poor reservoir physical conditions, and the seabed is loose with a small pressure window. These conditions pose heightened safety challenges for the extraction of hydrates in this region. This study develops a multiphase flow model that accounts for the endothermic decomposition of hydrates and employs the finite difference method for its solution. Utilizing this model, the multiphase flow characteristics during depressurization extraction at a specific well in the “Shenhu” area are investigated. Building on this, the study analyses the impact of varying pump rates and geothermal gradients on multiphase flow properties, hydrate yield, and engineering safety. Based on the analytical findings, recommendations are proposed to balance hydrate production with engineering safety, effectively mitigating potential engineering accidents during depressurization extraction. The outcomes of this research offer technical guidance for the commercial exploitation of hydrates in the “Shenhu” area of the South China Sea, laying a foundation for future related studies.
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南海天然气水合物减压开采的热压耦合模型
南海 "神狐 "海域的沉积物类型为泥质沉积物,储层物理条件差,海底松散,压力窗口小。这些条件对在该地区开采水合物提出了更高的安全挑战。本研究建立了一个考虑水合物内热分解的多相流模型,并采用有限差分法进行求解。利用该模型,研究了 "神狐 "地区特定油井减压开采过程中的多相流特征。在此基础上,研究分析了不同泵速和地热梯度对多相流特性、水合物产量和工程安全的影响。根据分析结果,提出了平衡水合物产量和工程安全的建议,以有效减轻减压开采过程中可能发生的工程事故。研究成果为南海 "神狐 "地区水合物的商业开采提供了技术指导,为今后的相关研究奠定了基础。
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来源期刊
Energy Exploration & Exploitation
Energy Exploration & Exploitation 工程技术-能源与燃料
CiteScore
5.40
自引率
3.70%
发文量
78
审稿时长
3.9 months
期刊介绍: Energy Exploration & Exploitation is a peer-reviewed, open access journal that provides up-to-date, informative reviews and original articles on important issues in the exploration, exploitation, use and economics of the world’s energy resources.
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