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相关概念视频

Interference and Superposition of Waves01:07

Interference and Superposition of Waves

When two waves of the same nature occur in the same region simultaneously, they result in interference. Interference of waves implies that the net effect of the waves is the sum of the individual waves' effects. However, it does not imply that the individual waves affect the propagation of other waves.
Interference occurs in mechanical waves, such as sound waves, waves on a string, and surface water waves. Mechanical waves correspond to the physical displacement of particles. Hence,...
Propagation of Waves01:07

Propagation of Waves

When a wave propagates from one medium to another, part of it may get reflected in the first medium, and part of it may get transmitted to the second medium. In such a case, the interface of the two mediums can be considered as a boundary that is neither fixed nor free.
Consider a scenario where a wave propagates from a string of low linear mass density to a string of high linear mass density. In such a case, the reflected wave is out of phase with respect to the incident wave, however the...
Nuclear Overhauser Enhancement (NOE)01:06

Nuclear Overhauser Enhancement (NOE)

Irradiation of a spin-active nucleus causes an increase or decrease in the signal intensity of neighboring nuclei that are not necessarily chemically bonded or involved in J-coupling. This phenomenon, called the nuclear Overhauser enhancement (NOE), results from through-space interactions between the nuclear spins. The NOE effect decreases with increasing internuclear distance and is generally not observed beyond 4 angstroms. In NOE, dipole-dipole interactions between neighboring spin-active...
Extraction: Advanced Methods00:56

Extraction: Advanced Methods

Metal ions can be separated from one another by complexation with organic ligands–the chelating agent– to form uncharged chelates. Here, the chelating agent must contain hydrophobic groups and behave as a weak acid, losing a proton to bind with the metal. Since most organic ligands used in this process are insoluble or undergo oxidation in the aqueous phase, the chelating agent is initially added to the organic phase and extracted into the aqueous phase. The metal-ligand complex is formed in...

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相关实验视频

Updated: Jul 11, 2026

Data Processing Methods for 3D Seismic Imaging of Subsurface Volcanoes: Applications to the Tarim Flood Basalt
07:58

Data Processing Methods for 3D Seismic Imaging of Subsurface Volcanoes: Applications to the Tarim Flood Basalt

Published on: August 7, 2017

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一种用于地震勘探的混合波场分离方法,基于改进的GoogleLeNet.

ZhiQiang Gan1, XiangE Sun1

  • 1School of Electronic Information and Electrical Engineering, Yangtze University, Jingzhou, HuBei, China.

PloS one
|June 25, 2024
PubMed
概括

在地震勘探中同时采集会产生混合噪声. 这项研究引入了一种卷积神经网络 (CNN) 方法,一种改进的GoogleLeNet,可以有效地将有用的地震信号与噪音分开,从而提高数据质量.

科学领域:

  • 地质物理学 地质物理学
  • 地震勘探技术 技术 地震勘探技术

背景情况:

  • 同时采集对于超大规模,高精度的地震勘探至关重要,降低成本和提高效率.
  • 数据脱混合是同时获取的关键步骤,直接影响数据质量和勘探成功.
  • 由于混合噪声和有用信号的动力学和动态特性相似,传统的过方法不足以消除混杂.

研究的目的:

  • 在地震勘探中引入同时采集方法.
  • 用卷积神经网络 (CNN) 分析数据脱杂的原理.
  • 开发一个改进的基于GoogleLeNet的CNN,以有效地消除地震数据的混.

主要方法:

  • 引入了同时获取技术.
  • 分析了卷积神经网络 (CNN) 对于地震数据脱杂的应用.
  • 开发并实施了一个改进的googlenet架构,用于deblending方法.

主要成果:

  • 开发的CNN模型有效地将混合波场与混合的地震数据分开.
  • 该方法展示了快速高效的除能力.
  • 实现了有用的地震信号与噪声所需的分离.

结论:

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  • 改进的基于GoogleLeNet的CNN是一个可行的和有效的解决方案,用于在同时获取的地震数据中消除混.
  • 这种方法显著提高了获得的地震数据的质量.
  • 成功的脱是石油和天然气勘探项目成功的关键,这些项目利用同时获取.