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无固相低温钻井液的研制——用于青藏高原永冻层天然气水合物的钻探 被引量:22
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作者 王胜 陈礼仪 张永勤 《天然气工业》 EI CAS CSCD 北大核心 2009年第6期59-62,141,共4页
在即将实施的青藏高原永久冻土层天然气水合物的钻探中,钻井液体系的研制起着举足轻重的作用。通过对高原冻土天然气水合物的赋存环境特性和钻井取心工艺技术特点的分析研究,以流体低温特性理论为指导,同时借鉴国外的先进经验,提出了以... 在即将实施的青藏高原永久冻土层天然气水合物的钻探中,钻井液体系的研制起着举足轻重的作用。通过对高原冻土天然气水合物的赋存环境特性和钻井取心工艺技术特点的分析研究,以流体低温特性理论为指导,同时借鉴国外的先进经验,提出了以分解抑制法为基础进行低温钻井液体系设计的技术方案。在低温钻井液基础液研究的基础上,以15%NaCl溶液作为基础液研制出了满足高原冻土天然气水合物钻探要求的无固相低温钻井液体系,弥补了国内在这方面研究的不足,为实施高原冻土天然气水合物钻探做好了钻井液方面的技术准备工作。 展开更多
关键词 青藏高原 冻土 天然气水合物 钻探 无固相低温钻井液 研制
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Inversion of 3D velocity and anisotropy of near surfaces based on an azimuth-dependent dispersion curve inversion method
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作者 Jiang Ning-Bo Liang Chun-Tao Peng Wen 《Applied Geophysics》 SCIE CSCD 2021年第2期212-224,273,共14页
In petroleum seismic exploration,dense seismic ray coverage is often guaranteed through dense seismic sources and geophones.Dense ray coverage facilitates the high-resolution 3D velocity structure imaging of near surf... In petroleum seismic exploration,dense seismic ray coverage is often guaranteed through dense seismic sources and geophones.Dense ray coverage facilitates the high-resolution 3D velocity structure imaging of near surfaces using surface waves.In this study,the 3D velocity and anisotropy structure of a petroleum exploration area are obtained using the azimuth-dependent dispersion curve inversion(ADDCI)method.Imaging results show that low-velocity zones correspond to a river channel.The fast propagation direction(FPD)of S-waves along this channel is basically consistent with the direction of the channel.The eastern part of the study area has a surface sediment layer with a thickness of less than 20 m,which corresponds to the sand and gravel deposits formed by the river alluvial deposition near the surface.In addition,a relatively thick sedimentary layer is formed on the southern side of the study area.The anisotropy shows that the FPD is positively correlated with the direction of alluvial fl ow and that the magnitude of anisotropy in the deep part is greater than that in the shallow part.Inversion results are basically consistent with the geological data and suggest that the obtained model can truly refl ect the 3D velocity structure and anisotropy of the near-surface area.This study shows that the ADDCI method can maximize the high-energy surface waves in exploration data to obtain near-surface velocity structures,which provide a highly accurate model for near-surface static correction. 展开更多
关键词 ADDCI Near surface Dispersion inversion Surface wave imaging ANISOTROPY
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