Development of frequency-dependent traveltime tomography for controlled-source seismic data.
Development of frequency-dependent traveltime tomography for controlled-source seismic data.
批准号:
1056073
负责人:
Colin Zelt
金额:
$22.7万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-02-15 至 2017-01-31
中文摘要
大约10年前,在全球地震学中发展了一种理论来解释地震数据的有限频率性质,从该理论中推导出相对于一维参考地球模型的延迟时间,称为有限频率走时层析成像(FFTT)。通过考虑频率,可以更准确地估计速度,因为更准确地考虑了波传播的物理特性。FFTT一般不适用于受控源数据,因为没有必要的地壳或近地表参考速度模型,能够产生与记录的地震图足够接近的真实合成波形,以估计有意义的延迟时间。因此,需要使用沿沿着总路径计算的频率相关走时而不是延迟时间的逆方法,以便对受控源(拾取)走时数据进行建模。我将开发一种与频率相关的走时层析成像(FDTT)形式,它与全球地震学中使用的FFTT理论具有相同的目标,即更准确的速度估计。FDTT基于一种新的正演计算方法,称为波长相关速度平滑(WDVS)。虽然适用于所有受控源数据,FDTT的最重要的应用将是在近地表的研究(上~100米),因为这些数据往往有较长的地震波长相对于地下非均质性的长度尺度,因此最大的潜力射线(无限频率)理论是无效的。FDTT已经针对首次到达时间和2D模型的情况进行了开发和测试。该奖项将允许进一步测试合成和真实的数据,扩展到三维模型,反射时间的治疗,全波场检查和WDVS算法的校准,提高计算速度,并创建一个软件包免费学术发行。地震走时层析成像是用来成像地球?的内部通过确定弹性波的速度从表面到内核的空间变化。在20世纪70年代,地震学家采用了医学界的层析成像,直到最近,走时层析成像的正演模拟部分一直是射线理论,波传播的无限频率近似。这是因为射线理论计算效率高,适用于任意非均匀介质。在过去的10年里,全球地震学家已经表明,通过利用记录的地震图的频率内容,有可能获得更准确的估计地球的三维速度结构?的斗篷。受控源数据,而不是地震数据,在地球的应用研究中获得?在构造、石油、环境和工程研究中,由于地壳和近地表比地球更不均匀,因此需要一种不同的理论来利用受控源数据的频率内容?的地幔,因此没有参考模型已知的提前小扰动将足以匹配的真实的数据。在该奖项下开发的新方法和相应软件将在社会相关的新构造(风险),环境和工程领域产生最大的影响。这将包括对浅层断层进行成像,以进行地震危险评估,协助修复地下水污染场地,划定未绘制地图的废物处置场地的边界,以及在建造桥梁和水坝等大型结构之前评估地下的能力。该方法将作为软件免费提供给学术界。
英文摘要
About 10 years ago, a theory was developed in global seismology to account for the finite-frequency nature of seismic data from which delay times relative to a 1D reference Earth model are derived, known as finite-frequency traveltime tomography (FFTT). By taking frequency into account, a more accurate estimation of velocity is possible because the physics of wave propagation is more accurately being taken into account. FFTT is generally not applicable to controlled-source data because there is no requisite reference velocity model of the crust or near-surface that is capable of yielding realistic synthetic waveforms that are close enough to the recorded seismograms to estimate a meaningful delay time. As a result, an inverse method that uses a frequency-dependent traveltime calculated along the total path, as opposed to a delay time, is needed in order to model controlled-source (picked) traveltime data. I will develop a frequency-dependent form of traveltime tomography (FDTT) that has the same objective as the FFTT theory used in global seismology, namely more accurate velocity estimation. FDTT is based on a new method of forward calculation called wavelength-dependent velocity smoothing (WDVS). Although applicable to all controlled-source data, FDTT's most important application will be in near-surface studies (upper ~100 m) since these data often have long seismic wavelengths relative to the length scale of subsurface heterogeneities, and hence the greatest potential for ray (infinite-frequency) theory to be invalid. FDTT has already been developed and tested for the case of first-arrival times and 2D models. This award will allow for further testing on synthetic and real data, extension to 3D models, treatment of reflection times, a full-wavefield check and calibration of the WDVS algorithm, improved computational speed, and creation of a software package for free academic distribution. Seismic traveltime tomography is used to image the Earth?s interior by determining the spatial variation in the velocity of elastic waves from the surface to the inner core. In the 1970's, seismologists adapted tomography from the medical community and until recently, the forward modeling component of traveltime tomography has always been ray theory, an infinite-frequency approximation of wave propagation. This is because ray theory is computationally efficient and applicable to arbitrarily heterogeneous media. In the past 10 years, global seismologists have shown that by exploiting the frequency content of the recorded seismograms, it is possible to obtain a more accurate estimation of the 3D velocity structure of the Earth?s mantle. Controlled-source data, as opposed to earthquake data, are acquired in applied studies of the Earth?s crust and near-surface in tectonic, petroleum, environmental and engineering studies. A different theory is needed to exploit the frequency content of controlled-source data since the crust and near-surface are much more heterogeneous than the Earth?s mantle, and therefore there is no reference model known in advance from which small perturbations would be sufficient to match the real data. The new method and corresponding software developed under this award will have its greatest impact in the societally relevant neo-tectonic (risk), environmental and engineering fields. This will include imaging shallow faults for earthquake hazard assessment, assisting in the remediation of a groundwater contamination site, delimiting the boundaries of unmapped waste disposal sites, and assessing the competence of the subsurface before large structures such as bridges and dams are constructed. The methodology will be made freely available as software to the academic community.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Collaborative Research: Seismic Characterization of a Gas Hydrate System in the Gulf of Mexico - A Novel Approach to Evaluate High-Resolution Wide-Angle Data
-
批准号:0096449
-
项目类别:Standard Grant
-
资助金额:$8.02万
-
财政年份:2001
-
负责人:Colin Zelt
-
依托单位:
2D and 3D Seismic Imaging of Seamount Collision and Subduction Across the Central Chilean Margin
-
批准号:9633451
-
项目类别:Continuing Grant
-
资助金额:$8.24万
-
财政年份:1996
-
负责人:Colin Zelt
-
依托单位:
国内基金
海外基金
登录
查看更多内容
转录延伸因子参与粗糙脉孢菌生物钟基因frequency表达调控分子机制的研究
-
批准号:--
-
项目类别:面上项目
-
资助金额:58万元
-
批准年份:2021
-
负责人:何群
-
依托单位:
基于高频信息下高维波动率矩阵估计及应用
-
批准号:71901118
-
项目类别:青年科学基金项目
-
资助金额:18.0万元
-
批准年份:2019
-
负责人:穆燕
-
依托单位:
高频数据波动率统计推断、预测与应用
-
批准号:71971118
-
项目类别:面上项目
-
资助金额:50.0万元
-
批准年份:2019
-
负责人:孔新兵
-
依托单位:
粗糙脉孢菌生物钟基因frq转录抑制因子的筛选及其作用机制研究
-
批准号:31330004
-
项目类别:重点项目
-
资助金额:289.0万元
-
批准年份:2013
-
负责人:何群
-
依托单位:
新型非对称频分双工系统及其射频关键技术研究
-
批准号:61102055
-
项目类别:青年科学基金项目
-
资助金额:25.0万元
-
批准年份:2011
-
负责人:林水洋
-
依托单位:
全固态钠黄光激光器波长调控与锁定技术研究
-
批准号:60508013
-
项目类别:青年科学基金项目
-
资助金额:23.0万元
-
批准年份:2005
-
负责人:薄勇
-
依托单位: