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海底高频地震仪观测系统优化设计及其在南海天然气水合物勘探中的应用 被引量:10
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作者 沙志彬 郑涛 +5 位作者 张光学 刘学伟 伍忠良 梁金强 苏丕波 王静丽 《天然气工业》 EI CAS CSCD 北大核心 2014年第7期136-142,共7页
海底高频地震仪(HF-OBS)可获得含天然气水合物(以下简称水合物)层的纵横波速度、波阻抗等多种有效地震反射信息,对准确估算水合物的资源量具有重要意义。根据我国南海北部海底水合物HF-OBS勘探实例,基于射线追踪法、双聚焦法、波动... 海底高频地震仪(HF-OBS)可获得含天然气水合物(以下简称水合物)层的纵横波速度、波阻抗等多种有效地震反射信息,对准确估算水合物的资源量具有重要意义。根据我国南海北部海底水合物HF-OBS勘探实例,基于射线追踪法、双聚焦法、波动方程的正演模拟法3种方法,对HF-OBS观测系统进行了优化设计,并利用纵横波联合走时反演获得了该区含水合物层的纵横波速度关系。结论认为:①采用射线追踪法模拟目的层射线分布和叠加次数,同时结合波动方程的正演模拟结果,可以有效地进行观测系统优化设计;②双聚焦理论的参数模拟能够进一步验证观测系统设计的合理性,针对特定的水合物目标体,为了获取矿体内部精细的速度结构,HF-OBS的分布形态应采用长方形或正方形的矩阵分布,分布间距以300~500m为宜;③优化后的观测系统有利于获得高质量的HF-OBS地震数据,而纵横波联合反演获得的速度信息减小了水合物识别的不确定性。 展开更多
关键词 中国南海 海底高频地震仪 观测系统 优化设计 天然气水合物 声波速度 联合走时反演 分布形态
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Using 4C OBS to reveal the distribution and velocity attributes of gas hydrates at the northern continental slope of South China Sea 被引量:7
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作者 沙志彬 张明 +2 位作者 张光学 梁金强 苏丕波 《Applied Geophysics》 SCIE CSCD 2015年第4期555-563,628,629,共11页
To investigate the distribution and velocity attributes of gas hydrates in the northern continental slope of South China Sea, Guangzhou Marine Geological Survey conducted four-component (4C) ocean-bottom seismometer... To investigate the distribution and velocity attributes of gas hydrates in the northern continental slope of South China Sea, Guangzhou Marine Geological Survey conducted four-component (4C) ocean-bottom seismometer (OBS) surveys. A case study is presented to show the results of acquiring and processing OBS data for detecting gas hydrates. Key processing steps such as repositioning, reorientation, PZ summation, and mirror imaging are discussed. Repositioning and reorientation find the correct location and direction of nodes. PZ summation matches P- and Z-components and sums them to separate upgoing and downgoing waves. Upgoing waves are used in conventional imaging, whereas downgoing waves are used in mirror imaging. Mirror imaging uses the energy of the receiver ghost reflection to improve the illumination of shallow structures, where gas hydrates and the associated bottom-simulating reflections (BSRs) are located. We developed a new method of velocity analysis using mirror imaging. The proposed method is based on velocity scanning and iterative prestack time migration. The final imaging results are promising. When combined with the derived velocity field, we can characterize the BSR and shallow structures; hence, we conclude that using 4C OBS can reveal the distribution and velocity attributes of gas hydrates. 展开更多
关键词 gas hydrates velocity attributes ocean-bottom seismometer PZ summation mirror imaging
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