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Progresses of gas hydrate resources exploration in sea area |
YANG Shengxiong1, LIANG Jinqiang1, LIU Changling2, SHA Zhibin1 |
1. Ministry of Land and Resources Key Laboratory of Marine Mineral Resources, Guangzhou Marine Geological Survey,Guangzhou 510075,China; 2. Ministry of Land and Resources Key Laboratory of Natural Gas Hydrate, Qingdao Institute of Marine Geology, Qingdao 266071, China |
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Abstract According to the project Gas Hydrate Resources Exploration in Sea Area organized by the China Geological Survey in recent years, the gas hydrate exploration in the northern South China Sea, environmental monitoring and evaluation and the research of gas hydrate accumulation theory, the key test-mining technology and experimental simulation were carried out. A large amount of basic data was obtained and a series of breakthroughs and original achievements were made. The gas hydrate reserves in sea area of our country were initially proved. All of these results provided a strong support for the implementation of test-mining work. This project fully supports the construction of the Natural Gas Hydrate Engineering Technology Center of China Geological Survey, Ministry of Land and Resources (MLR) Key Laboratory of Marine Mineral Resources and Ministry of Land and Resources (MLR) Key Laboratory of Natural Gas Hydrate. It promotes the deep integration of technological innovation and geological survey, and encourags the science progress of gas hydrate.
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Received: 20 March 2017
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[1] Paull C K,Matsumoto R.Leg 164 overview[C]//Proceedings of the Ocean Drilling Program:Scientific Results.College Station,TX:Ocean Drilling Program,2000:164. [2] Wood W T,Ruppel C.Seismic and thermal investigations of the blake ridge gas hydrate area:a synthesis[C]//Proceedings of the Ocean Drilling Program:Scientific Results.College Station,TX:Ocean Drilling Program,2000,164:253-264. [3] Boswell R,Frye M,Shelander D,et al.Architecture of gas-hydrate-bearing sands from Walker Ridge 313,Green canyon 955,and Alaminos canyon 21:Northern deepwater Gulf of Mexico[J].Mar Petrol Geol,2012,34(1):134-149. [4] Dallimore S R,Collett T S,Taylor A E,et al.Scientific results from the Mallik 2002 gas hydrate production research well program,Mackenzie Delta,northwest territories,Canada:Preface[J].Bull Geol Surv Canada,2005:585. [5] Anderson B,Hancock S,Wilson S,et al.Formation pressure testing at the Mount Elbert gas hydrate stratigraphic test well,Alaska North Slope:Operational summary,history matching,and interpretations[J].Mar Petrol Geol,2011,28(2):478-492. [6] Yamamoto K.Methane hydrate offshore production test in the eastern Nankai Trough;A milestone on the path to real energy resource[C]//Proceedings of the 8th International Conference on Gas Hydrates (ICGH 2014).Beijing:ICGH,2014:T3-153. [7] Zhang H Q,Yang S X,Wu N Y,et al.Successful and surprising results for China’s first gas hydrate drilling expedition[J].Fire in the Ice,Methane hydrate Newsletter,National Energy Technology Laboratory,US Department of Energy,2007:6-9. [8] Wang X J,Collett T S,Lee M W,et al.Geological controls on the occurrence of gas hydrate from core,downhole log,and seismic data in the Shenhu area,South China Sea[J].Mar Geol,2014,357:272-292. [9] Yang S X,Zhang M,Liang J Q,et al.Preliminary results of China’s third gas hydrate drilling expedition:A critical step from discovery to development in the South China Sea[J].Fire Ice,2015,15(2):1-21. [10] 杨胜雄,梁金强,陆敬安,等.南海北部神狐海域天然气水合物成藏特征及主控因素新认识[J].地学前缘,2017,24:1-14. [11] 关进安,卢静生,梁德青,等.高压下南海神狐水合物区域海底沉积地层三轴力学性质初步测试[J].新能源进展,2017,5(1):40-46. [12] 刘芳,寇晓勇,蒋明镜,等.含水合物沉积物强度特性的三轴试验研究[J].岩土工程学报,2013,35(8):1565-1572. [13] Drachev S S,Savostin L A,Groshev V G,et al.Structure and geology of the continental shelf of the Laptev Sea,Eastern Russian Arctic[J].Tectonophysics,1998,298(4):357-393. [14] Sekretov S B.Structure and tectonic evolution of the southern Eurasia Basin,Arctic Ocean[J].Tectonophysics,2002,351(3):193-243. [15] Khain V E,Polyakova I D,Filatova N I.Tectonics and petroleum potential of the East Arctic province[J].Russ Geol Geophys,2009,50(4):334-345. [16] Artyushkov E V.The superdeep North Chukchi Basin:formation by eclogitization of continental lower crust,with petroleum potential implications[J].Russ Geol Geophys,2010,51(1):48-57. [17] Vadakkepuliyambatta S,Hornbach M J,Bünz S,et al.Controls on gas hydrate system evolution in a region of active fluid flow in the SW Barents Sea[J].Mar Petrol Geol,2015,66:861-872. [18] Klitzke P,Scheck-Wenderoth M,Schicks J,et al.The fate of gas hydrates in the Barents Sea and Kara Sea region[C]//EGU General Assembly Conference Abstracts.Vienna Austria:EGU,2016,18:13200. [19] 胡高伟,业渝光,张剑,等.松散沉积物中天然气水合物生成、分解过程与声学特性的实验研究[J].现代地质,2008,22(3):465-474. [20] 黄永样,SUESS E,吴能友.南海北部陆坡甲烷和天然气水合物地质——中德合作SO-177航次成果专报[M].北京:地质出版社,2008:1-197. [21] 龚跃华,张光学,郭依群,等.南海北部神狐西南海域天然气水合物成矿远景[J].海洋地质与第四纪地质,2013,33(2):97-104. [22] 梁金强,王宏斌,苏新,等.南海北部陆坡天然气水合物成藏条件及其控制因素[J].天然气工业,2014,34(7):128-135. [23] 梁金强,张光学,陆敬安,等.南海东北部陆坡天然气水合物富集特征及成因模式[J].天然气工业,2016,36(10):157-162. [24] Zhang G X,Liang J Q,Lu J A,et al.Geological features,controlling factors and potential prospects of the gas hydrate occurrence in the east part of the Pearl River Mouth Basin,South China Sea[J].Mar Petrol Geol,2015,67:356-367. [25] 陈多福,苏正,冯东,等.海底天然气渗漏系统水合物成藏过程及控制因素[J].热带海洋学报,2005,24(3):38-46. [26] 陈多福,冯东,Cathles L M,等.海底天然气渗漏系统水合物成藏动力学及其资源评价方法[J].大地构造与成矿学,2005,29(2):278-284. [27] 张光学,梁金强,张明,等.海洋天然气水合物地震联合探测[M].北京:地质出版社,2014. [28] 陶军,陈宗恒."海马"号无人遥控潜水器的研制与应用[J].工程研究:跨学科视野中的工程,2016,8(2):185-191. [29] 苏丕波,乔少华,付少英,等.南海北部琼东南盆地天然气水合物成藏数值模拟[J].天然气地球科学,2014,25(7):1111-1119. [30] 李淑霞,陈月明,杜庆军.天然气水合物开采方法及数值模拟研究评述[J].中国石油大学学报(自然科学版),2006,30(3):146-150. [31] 李刚,李小森,陈琦,等.南海神狐海域天然气水合物开采数值模拟[J].化学学报,2010,68(11):1083-1092. |
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