Methane sealed due to the formation of gas hydrate system in the South China Sea

IF 4.8 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Earth and Planetary Science Letters Pub Date : 2024-11-21 DOI:10.1016/j.epsl.2024.119114
Limin Gou , Zijian Zhang , Xianjun Zeng , Yulin He , Canping Li , Xuewei Liu
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Abstract

Although the release of methane into oceans and potentially the atmosphere could accelerate climate change, detailed investigations on the gas source from deep-buried strata and its migration through the gas hydrate stability zone (GHSZ) to the seafloor are limited. These studies are often hindered by the presence of diffracted waves and inaccuracies in seismic velocity models, leading to poor seismic imaging that hampers the understanding of gas sources, migration pathways, and gas hydrate accumulation. In the study, we utilize the technique of common scatter point (CSP) gathers to build an accurate velocity model and obtain high-quality images for a complex gas-hydrate and natural-gas petroleum system. The CSP processing enables the accurate migration of reflected and diffracted waves, resulting in improvements in signal-to-noise ratio and lateral resolution. The improved seismic images offer clearer visualization of various petroleum elements. Specifically, we can identify the top of the hydrate zone and base of the free gas zone within a shallow-buried hydrate system, fault geometries within the free gas zone, a middle-buried natural gas reservoir, gas chimneys as migration pathways, and the deep-buried source rock strata beneath the intrusive volcanic rocks. As a result, we reveal a joint prospect of natural-gas reservoir and gas-hydrate system in the deep-water region of the South China Sea. Our results suggest that methane in the natural gas reservoir has migrated upwardly into the hydrate system, and it is unlikely to leak into the water column.
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南海天然气水合物系统的形成导致甲烷封存
虽然甲烷释放到海洋和大气中可能会加速气候变化,但对来自深埋地层的气体来源及其通过气体水合物稳定区(GHSZ)迁移到海底的详细调查却很有限。由于衍射波的存在和地震速度模型的不准确,这些研究往往受到阻碍,导致地震成像效果不佳,妨碍了对气体来源、迁移路径和气体水合物积累的了解。在这项研究中,我们利用共同散点(CSP)采集技术,为复杂的天然气水合物和天然气石油系统建立精确的速度模型,并获得高质量的图像。CSP 处理实现了反射波和衍射波的精确迁移,从而提高了信噪比和横向分辨率。改进后的地震图像能更清晰地显示各种石油元素。具体来说,我们可以识别浅埋水合物系统中的水合物区顶部和游离气区底部、游离气区内的断层几何形状、中埋天然气储层、作为迁移通道的天然气烟囱以及侵入火山岩下的深埋源岩层。因此,我们揭示了南海深水区天然气储层和天然气水合物系统的共同前景。我们的研究结果表明,天然气储层中的甲烷已向上迁移到水合物系统中,不太可能泄漏到水体中。
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来源期刊
Earth and Planetary Science Letters
Earth and Planetary Science Letters 地学-地球化学与地球物理
CiteScore
10.30
自引率
5.70%
发文量
475
审稿时长
2.8 months
期刊介绍: Earth and Planetary Science Letters (EPSL) is a leading journal for researchers across the entire Earth and planetary sciences community. It publishes concise, exciting, high-impact articles ("Letters") of broad interest. Its focus is on physical and chemical processes, the evolution and general properties of the Earth and planets - from their deep interiors to their atmospheres. EPSL also includes a Frontiers section, featuring invited high-profile synthesis articles by leading experts on timely topics to bring cutting-edge research to the wider community.
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