...
首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Anisotropic amplitude variation of the bottom-simulating reflector beneath fracture-filled gas hydrate deposit
【24h】

Anisotropic amplitude variation of the bottom-simulating reflector beneath fracture-filled gas hydrate deposit

机译:裂缝填充的天然气水合物沉积物下方的模拟底部反射器的各向异性振幅变化

获取原文
获取原文并翻译 | 示例

摘要

For the first time, we report the amplitude variation with angle (AVA) pattern of bottom-simulating reflectors (BSRs) beneath fracture-filled gas hydrate deposits when the effective medium is anisotropic. The common depth point (CDP) gathers of two mutually perpendicular multichannel seismic profiles, located in the vicinity of Site NGHP-01-10, are appropriately processed such that they are fit for AVA analysis. AVA analysis of the BSR shows normal-incidence reflection coefficients of -0.04 to -0.11 with positive gradients of 0.04 to 0.31 indicating class IV pattern. The acoustic properties from isotropic rock physics model predict class III AVA pattern which cannot explain the observed class IV AVA pattern in Krishna-Godavari basin due to the anisotropic nature of fracture-filled gas hydrate deposits. We modeled the observed class IV AVA of the BSR by assuming that the gas hydrate bearing sediment can be represented by horizontally transversely isotropic (HTI) medium after accounting for anisotropic wave propagation effects on BSR amplitudes. The effective medium properties are estimated using Backus averaging technique, and the AVA pattern of BSRs is modeled using the properties of overlying HTI and underlying isotropy/HTI media with or without free gas. Anisotropic AVA analysis of the BSR from the inline seismic profile shows 5-30% gas hydrate concentration (equivalent to fracture density) and the azimuth of fracture system (fracture orientation) with respect to the seismic profile is close to 45°. Free gas below the base of gas hydrate stability zone is interpreted in the vicinity of fault system (F1).
机译:我们首次报道了当有效介质为各向异性时,裂缝填充的天然气水合物沉积物下方的底部模拟反射器(BSR)的振幅随角度(AVA)模式的变化。位于站点NGHP-01-10附近的两个相互垂直的多通道地震剖面的公共深度点(CDP)道集经过适当处理,以适合AVA分析。 BSR的AVA分析显示法向入射反射系数为-0.04至-0.11,正梯度为0.04至0.31,指示IV类图案。各向同性岩石物理学模型的声学特性预测了III类AVA模式,由于裂缝填充的天然气水合物矿床具有各向异性,因此无法解释在克里希纳-哥达瓦里盆地观测到的IV类AVA模式。我们通过假设考虑各向异性波传播对BSR振幅的影响后,假设可以用水平横向各向同性(HTI)介质表示含天然气水合物的沉积物来对BSR的IV类AVA进行建模。使用Backus平均技术估算有效的介质特性,并使用上层HTI和下层各向同性/ HTI介质(有或没有自由气)的特性对BSR的AVA模式进行建模。根据在线地震剖面对BSR进行的各向异性AVA分析显示,天然气水合物浓度为5-30%(相当于裂缝密度),裂缝系统相对于地震剖面的方位角(裂缝方向)接近45°。在断层系统(F1)附近解释了天然气水合物稳定区底部以下的游离气。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号