固定窗口关节欧勒解卷用于深度估计沙瓦兹地区磁力和重力数据的奥勒解卷
Seyed Hossein Hosseini1,2, Ahmad Afshar3, Maysam Abedi4
1School of Computing and Engineering, University of West London, London, W5 5RF, UK.
Scientific reports
|November 26, 2025
概括
本研究介绍了一种先进的联合欧勒解卷算法,用于磁性和重力数据分析. 该方法改善了复杂地质区域矿产勘探的地下深度估计.
科学领域:
- 地质物理学 地质物理学
- 矿产勘探 矿产勘探 矿产勘探 矿产勘探
- 计算方法 计算方法
背景情况:
- 传统的欧勒解卷方法独立分析磁力和重力数据,导致深度估计准确性的限制.
- 准确的地下深度估计对于识别地质地形中的矿物质体和结构不连续性至关重要.
研究的目的:
- 开发和验证一个先进的联合欧勒解卷算法,用于集成磁性和重力数据分析.
- 为了提高地下深度估计的准确性,在沙瓦兹地区使用适应性固定窗口大小.
- 为了证明矿产勘探的综合地质物理方法的实际可靠性.
主要方法:
- 同时解决欧勒方程对于磁场和重力潜在场.
- 采用适应性固定窗口大小策略,以提高深度估计.
- 使用合成建模验证算法并将其应用于沙瓦兹地区的现场数据.
主要成果:
- 与传统方法相比,联合欧勒解卷算法显著提高了地下深度估计的准确性.
- 应用到沙瓦兹地区的数据成功地揭示了铁矿物化的空间分布,与已知的地质结构和钻探结果相关联.
- 适应性窗口策略增强了异常边界划分和深度解决方案精度.
结论:
- 拟议的综合地质物理方法为在地质复杂地形中进行矿产勘探提供了强大而有效的工具.
- 这种先进的算法有效地减轻了解释的模糊性,并降低了勘探风险.
- 这项研究证实了用于地下分析的联合欧勒解卷式的实际可靠性和准确性.
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