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多波地震勘探及裂縫儲(chǔ)層預(yù)測(cè)研究進(jìn)展
李向陽1,2,王九拴2,3
1 中國(guó)石油大學(xué) ( 北京 ) 地理物理與信息工程學(xué)院,北京 102249 2 中國(guó)石油集團(tuán)東方地球物理勘探有限責(zé)任公司,,涿州 072751 3 成都理工大學(xué)油氣藏地質(zhì)及開發(fā)工程國(guó)家重點(diǎn)實(shí)驗(yàn)室,,成都 610081 *通信作者, [email protected]
Recent advances in multicomponent seismic and fractured reservoir characterization
LI Xiangyang, WANG Jiushuan
1 College of Geophysics and Information Engineering, China University of Petroleum (Beijing), Beijing 102249 2 BGP Inc., China National Petroleum Corporation, Zhuozhou 072751 3 State Key Laboratory for Oil and Gas Geological and Production Engineering, Chengdu University of Technology, Chengdu 610081

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摘要? 綜述多波多分量地震學(xué)的基本概念及其在油氣儲(chǔ)層描述中的應(yīng)用,并結(jié)合中國(guó)陸上三維三分量(3D3C)地震勘探實(shí)例闡述多波地震勘探的方法技術(shù)原理及應(yīng)用效果,。在巖性油氣藏勘探中,,縱波(P 波)和橫波(S 波)的傳播速度和波阻抗的變化可以用來識(shí)別巖性圈閉;而在裂縫型油氣藏勘探中,,由于儲(chǔ)層中定向排列的裂縫導(dǎo)致儲(chǔ)層具有地震各向異性特征,,在多波多分量地震勘探中可以觀測(cè)到縱波方位各向異性與橫波分裂現(xiàn)象。充分利用這些地震波場(chǎng)特征有助于開展對(duì)儲(chǔ)層中裂縫走向,、發(fā)育密度及其空間分布情況的定量描述,。此外,,從多波多分量地震數(shù)據(jù)中能夠提取基于頻率變化的地震屬性,其中包含有與儲(chǔ)層中填充的流體類型與流體賦存空間有關(guān)的重要信息,。目前在國(guó)內(nèi)外多個(gè)油氣田開展的多波多分量地震應(yīng)用實(shí)例充分證明了該技術(shù)在油氣藏儲(chǔ)層特征描述方面具有毋庸置疑的技術(shù)潛力,。盡管如此,多波多分量地震勘探技術(shù)的推廣應(yīng)用仍然面臨諸多挑戰(zhàn),,如陸上多波多分量地震勘探數(shù)據(jù)采集質(zhì)量與效率,、轉(zhuǎn)換波(PS 波)精確成像及多波資料解釋等問題。只有不斷改進(jìn)并完善上述問題的解決方案,,多波多分量地震勘探技術(shù)才有望成為油氣勘探的主流技術(shù),。
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關(guān)鍵詞 : 轉(zhuǎn)換波勘探,; 多分量地震; 橫波分裂,; 地震裂縫檢測(cè)
Abstract

  This paper reviews the basic concepts of multicomponent seismology and how it can be applied to characterize hydrocarbon reservoirs, which is illustrated using 3D3C real data examples from onshore China. Hydrocarbon reservoirs formed from subtle lithological changes, such as stratigraphic traps, may be delineated from changes in P- and S-wave velocities and impedances. Hydrocarbon reservoirs containing aligned fractures are anisotropic. Examination of the resultant azimuthal variations of P-wave attributes and split shear-waves can give us better definition of their internal structures including fracture orientation, fracture density as well as their spatial distribution. Furthermore, frequency-dependent variations in seismic attributes derived from multicomponent data can provide us with vital information about fluid type and distribution. Current practice and various examples have demonstrated the undoubted potential of multicomponent seismic technology in reservoir characterization. Despite all this, there are still substantial challenges ahead. In particular, the data quality and efficiency of onshore multicomponent seismic acquisition, the improvement of converted-wave imaging and interpretation are major hurdles. All of these need to be overcome before multicomponent seismic exploration becomes a main stream technology.

Key words: converted waves ; multicomponent seismic ; shear-wave splitting ; seismic fracture detection
收稿日期: 2018-05-30 ????
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李向陽,,王九拴. 多波地震勘探及裂縫儲(chǔ)層預(yù)測(cè)研究進(jìn)展[J]. 石油科學(xué)通報(bào), 2016, 1(1): 45-60. LI Xiangyang, WANG Jiushuan. Recent advances in multicomponent seismic and fractured reservoir characterization. 石油科學(xué)通報(bào), 2016, 1(1): 45-60.
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