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一种计算反射/传输系数的快速精确算法 被引量:5
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作者 法林 Castagna John P. 董和风 《中国科学(G辑)》 CSCD 2008年第7期873-895,共23页
针对VTI(关于垂直轴横向各向同性)介质之间的界面、VTI介质和液体之间的界面以及VTI介质弹性半空间的自由界面提出了一种精确的计算反射/传输系数的快速算法.也对过入射临界角入射的情况进行了特别的考虑和讨论.尽管我们仅对VTI介质模... 针对VTI(关于垂直轴横向各向同性)介质之间的界面、VTI介质和液体之间的界面以及VTI介质弹性半空间的自由界面提出了一种精确的计算反射/传输系数的快速算法.也对过入射临界角入射的情况进行了特别的考虑和讨论.尽管我们仅对VTI介质模型进行了数值计算,但是计算的结果也可推广到HTI(关于水平轴横向各向同性)介质模型中.和前人所做的研究工作相比较,这种算法不仅适用于椭圆各向异性介质之间边界反射/传输系数的计算,而且也适用于一般各向异性介质之间边界反射/传输系数的计算,这种算法的计算精度更高,速度更快.文章还依据国外已发表的岩石各向异性参数和物理参数,利用该算法对上述界面的反射/折射系数进行了计算,分析和讨论了岩石各向异性对反射/传输系数的影响,并且用斯耐尔定理和能量平衡原理对计算结果的正确性进行了验证。 展开更多
关键词 反射/传输系数 AVO分析 VTI介质 HTI介质
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Reflection and transmission of bottom simulating reflectors in gas hydrate-bearing sediments: Two-phase media models 被引量:2
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作者 麻纪强 耿建华 《Applied Geophysics》 SCIE CSCD 2008年第1期57-66,共10页
The bottom simulating reflector (BSR) in gas hydrate-bearing sediments is a physical interface which is composed of solid, gas, and liquid and is influenced by temperature and pressure. Deep sea floor sediment is a ... The bottom simulating reflector (BSR) in gas hydrate-bearing sediments is a physical interface which is composed of solid, gas, and liquid and is influenced by temperature and pressure. Deep sea floor sediment is a porous, unconsolidated, fluid saturated media. Therefore, the reflection and transmission coefficients computed by the Zoeppritz equation based on elastic media do not match reality. In this paper, a two-phase media model is applied to study the reflection and transmission at the bottom simulating reflector in order to find an accurate wave propagation energy distribution and the relationship between reflection and transmission and fluid saturation on the BSR. The numerical experiments show that the type I compressional (fast) and shear waves are not sensitive to frequency variation and the velocities change slowly over the whole frequency range. However, type II compressional (slow) waves are more sensitive to frequency variation and the velocities change over a large range. We find that reflection and transmission coefficients change with the amount of hydrate and free gas. Frequency, pore fluid saturation, and incident angle have different impacts on the reflection and transmission coefficients. We can use these characteristics to estimate gas hydrate saturation or detect lithological variations in the gas hydrate-bearing sediments. 展开更多
关键词 Gas hydrate BSR two-phase media reflection coefficient transmission coefficient.
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