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地震弹性参数
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  “地震弹性参数”译为未确定词的双语例句
     We can evaluate the amounts of the gas hydrate according to the BSR characters in the light of the seismic elasticity parameters and sediment porosity characters.
     根据地震剖面上的拟海底反射层(BSR)识别水合物 的存在,并结合地震弹性参数和利用沉积物的孔隙率等特征,来评估海底天然气水合物的资源前景。
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     Based on the investigation of the meanings of different elastic parameters and the characteristics of elastic parameters for hydrocarbon-bearing reservoirs, this paper studied the interpretation techniques of elastic attribute sections, and demonstrated them with real data examples both from home and abroad.
     在研究地震弹性属性参数基本意义的基础上,阐述了含油气储层的弹性参数的基本特征,探索了典型的含油气弹性参数属性剖面的解释方法和准则,并对国内外典型地震弹性参数属性剖面进行了解释,得出了有益的结论。
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  相似匹配句对
     A new approach to seismic inversion of elastic parameters for VTI media
     VTI介质中弹性参数地震反演方法
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     Earthquake
     地震
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     SOURCE PARAMETERS OF THE BOHAI EARTHQUAKE OF 1969
     渤海地震的震源参数
短句来源
     An Earthquake
     地震
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     A New Method on Prestack Elastic Parameters Inversion
     叠前弹性参数反演新方法
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This paper introduces in brief the seismic reflection method for the diagnosis and resource evaluation of the marine gas hydrate deposits. The BSR (Bottom Simulating Reflection) of the seismic cross-section may identify the existence of marine gas hydrate and its distributing characters. We can evaluate the amounts of the gas hydrate according to the BSR characters in the light of the seismic elasticity parameters and sediment porosity characters.

海底天然气水合物是21世纪的重要新能源,本文介绍了利用地震反射法来识别海底天然气水合物 的存在和分布特征,并对其资源量进行评价的方法。根据地震剖面上的拟海底反射层(BSR)识别水合物 的存在,并结合地震弹性参数和利用沉积物的孔隙率等特征,来评估海底天然气水合物的资源前景。

This paper introduces some methods of studying marine gas hydrate using multi-chancel reflection seismic data, such as AVO (Amplitude Versus Offset) analysis and other forward modeling and inversion of seismic data. Through studying the BSR (Bottom Simulating Reflection) characters and the elastic parametric structure of gas hydrate deposits, we can get the internal structure and some physical attributes of the hydrate-bearing sediments above the BSR and the sediments containing free gas below the BSR, such...

This paper introduces some methods of studying marine gas hydrate using multi-chancel reflection seismic data, such as AVO (Amplitude Versus Offset) analysis and other forward modeling and inversion of seismic data. Through studying the BSR (Bottom Simulating Reflection) characters and the elastic parametric structure of gas hydrate deposits, we can get the internal structure and some physical attributes of the hydrate-bearing sediments above the BSR and the sediments containing free gas below the BSR, such as the porosity of the sediments and the Saturation of gas hydrate, then evaluate the amounts of the gas hydrate and discuss its formation mechanism.

介绍了利用多道反射地震资料,采用反射振幅随炮检距变化AVO(Amplitude versus Offset)技术 和其他地震正、反演方法,通过研究地震剖面上的拟海底反射层(BSR)分布、地震弹性参数特征,来探讨BSR上、下方含天然气水合物沉积层和含游离气沉积层的内部结构和某些主要物理性质,如沉积物的 空隙率、天然气水合物的饱和度等,由此来评估海底天热气水合物的资源前景并研究其成矿机制。

Elastic parameters of a reservoir are closely correlated with the lithology of a stratum. Their variations reveal the changes of lithology of the stratum. Therefore elastic parameters of a reservoir can be used to accurately evaluate the reservoir. Based on the investigation of the meanings of different elastic parameters and the characteristics of elastic parameters for hydrocarbon-bearing reservoirs, this paper studied the interpretation techniques of elastic attribute sections, and demonstrated them with...

Elastic parameters of a reservoir are closely correlated with the lithology of a stratum. Their variations reveal the changes of lithology of the stratum. Therefore elastic parameters of a reservoir can be used to accurately evaluate the reservoir. Based on the investigation of the meanings of different elastic parameters and the characteristics of elastic parameters for hydrocarbon-bearing reservoirs, this paper studied the interpretation techniques of elastic attribute sections, and demonstrated them with real data examples both from home and abroad. The conclusions could be applied to the exploration and production of subtle lithological reservoirs.

地震弹性属性参数与地层岩性密切相关,它的变化能够比较真实地反映出地层岩性的变化,因此,可以根据弹性属性参数及其变化,较直观、可靠地评价储层。在研究地震弹性属性参数基本意义的基础上,阐述了含油气储层的弹性参数的基本特征,探索了典型的含油气弹性参数属性剖面的解释方法和准则,并对国内外典型地震弹性参数属性剖面进行了解释,得出了有益的结论。该技术为隐蔽性岩性油气藏的勘探开发提供了新的技术支持,能够降低勘探开发风险。

 
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