首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Global optimization strategies for implementing 3D common-reflection-surface stack using the very fast simulated annealing algorithm: Application to real land data
【24h】

Global optimization strategies for implementing 3D common-reflection-surface stack using the very fast simulated annealing algorithm: Application to real land data

机译:使用非常快速的模拟退火算法实现3D共用反射表面堆栈的全局优化策略:应用于真实土地数据

获取原文
获取原文并翻译 | 示例
           

摘要

The 3D common-reflection-surface (CRS) stack operator depends on eight kinematic wavefield attributes that must be extracted from the prestack data. These attributes are obtained by an efficient optimization strategy based on the maximization of the coherence measure of the seismic reflection events included by the CRS stacking operator. The main application of these kinematic attributes is to simulate zero-offset stacked data; however, they can also be used for regularization of the prestack data, prestack migration, and velocity model determination. The initial implementations of the 3D CRS stack used grid-search techniques to determine the attributes in several steps with the drawback that accumulated errors can deteriorate the final result. In this work, the global optimization very fast simulated annealing algorithm is used to search for the kinematic attributes by applying three optimization strategies for implementing CRS stacking: (1) simultaneous global search of five kinematic attributes of the 3D common-diffraction-surface stacking operator, (2) two-step global optimization strategy to first search for three attributes and then five attributes of the CRS stacking operator, and (3) simultaneous global search of eight kinematic attributes of the CRS operator. The proposed CRS stacking algorithms are applied to land data of the Potiguar Basin, Brazil. It is demonstrated that the one-step optimization strategy of the eight parameters produces the best results, however, with a higher computational cost.
机译:3D共射表面(CRS)堆栈运算符取决于必须从Prestack数据中提取的八个运动波面属性。通过基于CRS堆叠操作员包括的地震反射事件的相干性测量的最大化来获得这些属性。这些运动属性的主要应用是模拟零偏移堆叠数据;但是,它们还可用于定期化Prestack数据,Prestack迁移和速度模型确定。 3D CRS堆栈的初始实施方式使用了网格搜索技术,以便在几个步骤中确定属性,其中累计错误可能会恶化最终结果。在这项工作中,全局优化非常快速模拟退火算法用于通过应用三种优化策略来搜索运动学属性,用于实现CRS堆叠:(1)同时全球搜索3D共衍射 - 表面堆叠操作员的五个运动属性(2)两步全局优化策略首先搜索三个属性,然后是CRS堆叠运算符的五个属性,以及(3)同时全局搜索CRS运算符的八个运动属性。所提出的CRS堆叠算法应用于巴西Pipiguar盆地的土地数据。据证明,八个参数的一步优化策略产生了较高的计算成本的最佳结果。

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