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A Preliminary Study of the Gas Hydrate Stability Zone in the South China Sea 被引量:22
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作者 JIN Chunshuang WANG Jiyang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2002年第4期423-428,共6页
Based on the analysis of sea-bottom temperature and geothermal gradient, andby means of the phase boundary curve of gas hydrate and the sea-bottom temperature versus waterdepth curve in the South China Sea, this paper... Based on the analysis of sea-bottom temperature and geothermal gradient, andby means of the phase boundary curve of gas hydrate and the sea-bottom temperature versus waterdepth curve in the South China Sea, this paper studies the temperature and pressure conditions forgas hydrate to keep stable. In a marine environment, methane hydrate keeps stable at water depthsgreater than 550 min the South China Sea. Further, the thickness of the gas hydrate stability zonein the South China Sea was calculated by using the phase boundary curve and temperature-depthequations. The result shows that gas hydrate have a better perspective in the southeast of theDongsha Islands. the northeast of the Xisha Islands and the north of the Nansha Islands for thickerstability zones. 展开更多
关键词 South China Sea gas hydrate stability zone geothermal gradient sea-bottomtemperature
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Geothermal investigation of the thickness of gas hydrate stability zone in the north continental margin of the South China Sea 被引量:3
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作者 WANG Yanmin LIU Shaowen +2 位作者 HAO Feifei ZHAO Yunlong HAO Chunyan 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2017年第4期72-79,共8页
The exploration of unconventional and/or new energy resources has become the focus of energy research worldwide,given the shortage of fossil fuels.As a potential energy resource,gas hydrate exists only in the environm... The exploration of unconventional and/or new energy resources has become the focus of energy research worldwide,given the shortage of fossil fuels.As a potential energy resource,gas hydrate exists only in the environment of high pressure and low temperature,mainly distributing in the sediments of the seafloor in the continental margins and the permafrost zones in land.The accurate determination of the thickness of gas hydrate stability zone is essential yet challenging in the assessment of the exploitation potential.The majority of previous studies obtain this thickness by detecting the bottom simulating reflectors(BSRs) layer on the seismic profiles.The phase equilibrium between gas hydrate stable state with its temperature and pressure provides an opportunity to derive the thickness with the geothermal method.Based on the latest geothermal dataset,we calculated the thickness of the gas hydrate stability zone(GHSZ) in the north continental margin of the South China Sea.Our results indicate that the thicknesses of gas hydrate stability zone vary greatly in different areas of the northern margin of the South China Sea.The thickness mainly concentrates on 200–300 m and distributes in the southwestern and eastern areas with belt-like shape.We further confirmed a certain relationship between the GHSZ thickness and factors such as heat flow and water depth.The thickness of gas hydrate stability zone is found to be large where the heat flow is relatively low.The GHSZ thickness increases with the increase of the water depth,but it tends to stay steady when the water depth deeper than 3 000 m.The findings would improve the assessment of gas hydrate resource potential in the South China Sea. 展开更多
关键词 gas hydrate thickness of stability zone heat flow continental margin South China Sea
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Spatial distribution and inventory of natural gas hydrate in the Qiongdongnan Basin,northern South China Sea 被引量:1
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作者 Zhongxian ZHAO Ning QIU +4 位作者 Zhen SUN Wen YAN Genyuan LONG Pengchun LI Haiteng ZHUO 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2023年第2期729-739,共11页
Natural gas hydrate is a potential clean energy source and is related to submarine geohazard,climate change,and global carbon cycle.Multidisciplinary investigations have revealed the occurrence of hydrate in the Qiong... Natural gas hydrate is a potential clean energy source and is related to submarine geohazard,climate change,and global carbon cycle.Multidisciplinary investigations have revealed the occurrence of hydrate in the Qiongdongnan Basin,northern South China Sea.However,the spatial distribution,controlling factors,and favorable areas are not well defined.Here we use the available high-resolution seismic lines,well logging,and heat flow data to explore the issues by calculating the thickness of gas hydrate stability zone(GHSZ)and estimating the inventory.Results show that the GHSZ thickness ranges between mostly~200 and 400 m at water depths>500 m.The gas hydrate inventory is~6.5×109-t carbon over an area of~6×104 km2.Three areas including the lower uplift to the south of the Lingshui sub-basin,the Songnan and Baodao sub-basins,and the Changchang sub-basin have a thick GHSZ of~250-310 m,250-330 m,and 350-400 m,respectively,where water depths are~1000-1600 m,1000-2000 m,and2400-3000 m,respectively.In these deep waters,bottom water temperatures vary slightly from~4 to 2℃.However,heat flow increases significantly with water depth and reaches the highest value of~80-100 mW/m2 in the deepest water area of Changchang sub-basin.High heat flow tends to reduce GHSZ thickness,but the thickest GHSZ still occurs in the Changchang sub-basin,highlighting the role of water depth in controlling GHSZ.The lower uplift to the south of the Lingshui sub-basin has high deposition rate(~270-830 m/Ma in 1.8-0 Ma);the thick Cenozoic sediment,rich biogenic and thermogenic gas supplies,and excellent transport systems(faults,diapirs,and gas chimneys)enables it a promising area of hydrate accumulation,from which hydrate-related bottom simulating reflectors,gas chimneys,and active cold seeps were widely revealed. 展开更多
关键词 gas hydrate stability zone gas hydrate inventory Qiongdongnan Basin South China Sea
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Stratigraphic Sequence and Sedimentary Systems in the Middle-Southern Continental Slope of the East China Sea from Seismic Reflection Data: Exploration Prospects of Gas Hydrate 被引量:1
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作者 LI Deyong CHEN Hongyan +3 位作者 XU Shujuan XING Junhui CHENG Honggang WANG Jinkai 《Journal of Ocean University of China》 SCIE CAS CSCD 2019年第6期1302-1316,共15页
Many evidences for gas hydrate bearing sediments had been found in the continental slope of the East China Sea,such as bottom simulating reflections(BSRs),undersea gas springs,pyrite associated with methane leakage,mu... Many evidences for gas hydrate bearing sediments had been found in the continental slope of the East China Sea,such as bottom simulating reflections(BSRs),undersea gas springs,pyrite associated with methane leakage,mud diapirs/mud volcanos,bottom-water methane anomalies and so on.In this study,six key stratigraphic interfaces including T_0(seafloor),T_1(LGM,23 kyr B.P.),T_2(2.58 Myr),T_3(5.33 Myr),T_4(11.02 Myr)and T_5(16.12 Myr)were identified,and then five third-order sequences of SQIII1 to SQIII5 were divided.However,T5 in southern continental slope is not found,which shows that the middle-northern Okinawa Trough had begun to rift in the early Miocene,earlier than the southern segment.Four system tracts including lowstand systems tract(LST),transgressive systems tract(TST),highstand systems tract(HST)and falling stage systems tract(FSST)are further divided.The marine erosion interface of 11.02 Myr and regressive unconformity interface of 23 kyr B.P.indicate two large-scale sea level drop events in the research area.Seven typical seismic facies identified in the continental slope are continental shelf-edge deltas,littoral fluvial-delta plains,incised channels or submarine canyons,slope fans,submarine fans or coastal sandbars,littoral-neritic finegrained sediments,mud volcanos and some other geological bodies respectively.The minimum water depth for hydrate occurrence in the Okinawa Trough is 630 m,and the thickness of gas hydrate stability zone in continental slope is between 0 and 590 m.The calculated bottom boundary of hydrate stability zone is slightly deeper than BSRs on the seismic sections.The re-depositional turbidite sand bodies,such as canyon channels,slope fans and submarine fans developed in Quaternary strata,are the predominant hydrate reservoirs.According to developing process,the dynamic accumulation of hydrate systems can be divided into three evolutionary stages including canyon erosion and hydrate stability zone migration stage,sediments destabilizing and methane leakage stage,and channel filling and hydrate re-occurrence stage. 展开更多
关键词 sequence STRATIGRAPHIC architecture SYSTEMS tract seismic FACIES DEPOSITIONAL system submarine CANYON gas hydrate stability zone hydrate dynamic accumulation continental slope of the East China Sea
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Acidolysis hydrocarbon characteristics and significance of sediment samples from the ODP drilling legs of gas hydrate 被引量:1
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作者 Xun Sun Chunyan Sun +3 位作者 Jiangyun Xiang Jihui Jia Panfeng Li Zhibin Zhang 《Geoscience Frontiers》 SCIE CAS 2012年第4期515-521,共7页
To study on the significance and basis of acidolysis index to China marine gas hydrate exploring, since 2006, 111 samples derived from Leg 164 and 204 of the Ocean Drilling Program (ODP) were analyzed in the experim... To study on the significance and basis of acidolysis index to China marine gas hydrate exploring, since 2006, 111 samples derived from Leg 164 and 204 of the Ocean Drilling Program (ODP) were analyzed in the experiment center of China Petroleum Exploration Research Institute to obtain data on acidolysis hydrocarbon index and methane carbon isotopes by the gas chromatography (GC) of PE AutoSystem XL and isotope mass spectrometer (IRMS) of Finnigan MAT25 I. Through these, we study the reliability of the acidolysis method and characterize the gas hydrate potential. The results show that the acidolysis hydrocarbon index has a stable correspondence with the Gas Hydrate Stability Zone (GHSZ) in the ODE and that there are clear abnormal signs in shallow samples that might reliably reflect the existence of authigenic carbonate caused by hydrocarbon migration from bottom hydrate. We therefore propose that the ability to characterize the acidolysis hydrocarbon is crucial to submarine gas hydrate exploration in China. 展开更多
关键词 Ocean Drilling Program (ODP) gas hydrate stability zone (OHSZ) Acidolysis hydrocarbon index Acidolysis hydrocarbon methane carbon isotopes Geochemical characteristics
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大洋蛇纹岩化无机成因甲烷水合物稳定带底界模拟 被引量:1
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作者 汤加丽 曹运诚 陈多福 《海洋地质与第四纪地质》 CAS CSCD 北大核心 2020年第4期107-115,共9页
随着深海调查研究的不断深入,发现大洋基性和超基性岩与水相互作用可发生蛇纹岩化作用产生无机成因甲烷等烃类气体,可能在大洋区海底形成水合物.为评估大洋蛇纹岩化无机成因甲烷水合物生成热力学条件及水合物稳定带分布特征,本文利用实... 随着深海调查研究的不断深入,发现大洋基性和超基性岩与水相互作用可发生蛇纹岩化作用产生无机成因甲烷等烃类气体,可能在大洋区海底形成水合物.为评估大洋蛇纹岩化无机成因甲烷水合物生成热力学条件及水合物稳定带分布特征,本文利用实测的原位温度、水深等条件,结合甲烷水合物-水-游离气三相平衡温压条件,计算了马里亚纳弧前蛇纹岩泥火山、北大西洋Fram海峡超慢速扩张脊和Lost City慢速扩张脊3个不同地质构造环境的蛇纹岩化发育的大洋区海底环境甲烷水合物稳定带底界,并对其水合物发育潜力进行了评估.研究表明马里亚纳弧前蛇纹岩泥火山和北大西洋Fram海峡超慢速扩张脊满足天然气水合物发育的热力学条件,可能发育有甲烷水合物,相应的水合物稳定带底界深度分别约为858~2515和153~232 mbsf.大西洋Lost City喷口附近发育甲烷水合物可能性较小. 展开更多
关键词 蛇纹岩化 无机成因甲烷 甲烷水合物 稳定带底界
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