祁连山冻土区天然气水合物现场识别方法
Received:September 06, 2012  Revised:September 09, 2013  点此下载全文
引用本文:WANG PingKang,ZHU YouHai,LU ZhenQuan,HUANG Xia,PANG ShouJi,ZHANG Shuai,YANG KaiLi.2013.Gas hydrate field identification methods in Qilian Mountain permafrost[J].Mineral Deposits,32(5):1045~1056
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Author NameAffiliation
WANG PingKang Oil and Gas Survey, China Geological Survey, Beijing 100029, China
Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 
ZHU YouHai Oil and Gas Survey, China Geological Survey, Beijing 100029, China
Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 
LU ZhenQuan Oil and Gas Survey, China Geological Survey, Beijing 100029, China
Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 
HUANG Xia Oil and Gas Survey, China Geological Survey, Beijing 100029, China
Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 
PANG ShouJi Oil and Gas Survey, China Geological Survey, Beijing 100029, China
Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 
ZHANG Shuai Oil and Gas Survey, China Geological Survey, Beijing 100029, China
Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 
YANG KaiLi Training Corps of Gold Headquarters of Chinese People's Armed Police Force, Xiangyang 441002, Hubei, China 
基金项目:本文得到国家自然科学基金项目(41102021,41202099);中央级公益性科研院所基本科研业务费资助项目(K1005)和"天然气水合物资源勘查与试采工程"国家专项(GZHL20110308)的联合资助
中文摘要:天然气水合物是一种赋存在低温、高压条件下,陆上永久冻土区和海底沉积物中的规模巨大的新型能源。在冻土区的天然气水合物研究过程中,钻探取样和天然气水合物岩芯研究仍是识别和推断天然气水合物最直接有效的方法。因此,如何在钻探现场快速有效地识别出天然气水合物及相关异常特征就显得极其重要。近几年在祁连山天然气水合物勘探过程中,探索性地总结出适用于冻土区的天然气水合物现场识别方法,主要包括肉眼观测、孔口气涌观测、岩芯红外测温、岩芯裂隙孔隙水盐度测定、岩芯气体解析与组分测定和岩芯次生构造与伴生矿物鉴别等方法。利用该套现场识别方法和随钻岩芯编录,有效地查明了祁连山冻土区天然气水合物在岩芯中的产状和分布特征,为该区天然气水合物资源评价和试开采试验提供了重要依据。
中文关键词:地质学  现场识别方法  天然气水合物  冻土区  祁连山
 
Gas hydrate field identification methods in Qilian Mountain permafrost
Abstract:Gas hydrate is a new type of potential energy that occurs within the land-based permafrost zone and marine sediments under low-temperature and high-pressure conditions. In the research on permafrost-associated gas hydrate, coring and investigation of gas hydrate-bearing cores remain the effective tools to identify and infer hydrate occurrence. The accurate identification of the gas hydrate and associated anomalous characteristics in the field is therefore very important. Based on gas hydrate exploration in the Qilian Mountain permafrost in recent years, the authors have tentatively summarized gas hydrates filed identification methods suitable for the permafrost zone. The methods mainly include the observation by naked eye, the observation of borehole gas blowout, the temperature measurement of the core by infrared ray, the salinity measurement of fracture and/or pore water, the gas volume and composition measurement from the core, as well as the identification of secondary structures and associated minerals in the core. With the help of the field identification methods and documentation with drilling, the occurrence and distribution characteristics of gas hydrate in the cores could be effectively revealed, thus providing geological data for the gas hydrate resource assessment and tentative production in the Qilian Mountain permafrost.
keywords:geology  field identification methods  gas hydrate  permafrost  Qilian Mountain
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