Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Bin‐Hua Niu"'
Autor:
Chang Liu, Jihui Jia, Quan Zou, Ji-Liang Guo, Fu-Ping Xu, Bin‐Hua Niu, Wei Yang, Chun‐Yan Sun
Publikováno v:
Chinese Journal of Geophysics. 54:725-736
In this paper, numerical method which is dominated by inversion is used to analyze CLYJ saturated limestone samples. Elastic parameters of rock framework and pore fluid are estimated from the overall measured density and velocity data in different po
Publikováno v:
Chinese Journal of Geophysics. 53:509-517
The mostly used methods for studying critical porosity and porous media are experimental measurement and analysis of testing data, and how to determine the porosity at the critical point and the constituents' properties are topics of great concern. I
Publikováno v:
Applied Geophysics. 6:319-326
Up to now, the primary method for studying critical porosity and porous media are experimental measurements and data analysis. There are few references on how to numerically calculate porosity at the critical point, pore fluid-related parameters, or
Publikováno v:
Chinese Journal of Geophysics. 48:188-196
Based on the acoustic wave field theory, we first study the forward model of seismic data for the case without free surface. Then we consider the case with a reflecting free surface, and derive the forward and inverse models for surface-related multi
Publikováno v:
Chinese Journal of Geophysics. 47:1212-1222
For the investigation of gas hydrate in marine area E, this paper presents a comprehensive evaluation and technology scheme for seismic indicator and geochemical anomaly, combined with consideration of the geologic origin of gas hydrate. There are su
Publikováno v:
Chinese Journal of Geophysics. 44:260-267
The Radon transform is a mathematical technique that has seen popular usage in seismic data processing and analysis. This paper presents a method of general Radon transform with 2-order polynomial. We have given out the forward and inverse transform
Publikováno v:
SEG Technical Program Expanded Abstracts 2007.
Based on the acoustic wave field theory, the forward as well as inverse model for surface-related multiple prediction and attenuation was formulated in an iterative implementation. In the physical insight, the dataconsistence-based time-space convolu