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It starts with an analysis of two classes of methods (homogeneous fractals random models, and homogeneous source distributions or “one point” distributions) widely diffused in the geophysical community, especially for studying potential fields and their related source distributions.
Introduction.- Scaling Laws in Geophysics: Application to Potential Fields of Methods Based on the Laws of Self-Similarity and Homeogeneity.- Curie Depth Estimation from Aeromagnetic for Fractal Distribution of Sources.- Fractal Faults: Implications in Seismic Interpretation and Geomodeling Detrended Fluctuation Analysis of Geophysical Well-Log Data.- Application of Fractal Geometry to Explain Fluid Flow through Subsurface Fractures.- Estimation and Application of Fractal Differential Adjacency Segregation (F-DAS) Scores in Analysis of Scanning Electron Micro Graph (SEM) Imageries towards Understanding the Adsorption unto Porous Solids.- The Multi-Fractal Scaling Behaviour of Seismograms based on the Detrended Fluctuation Analysis.- Fractal Methods in the Investigation of the Time Dynamics of Fires: A Review.
Ganguli,Shib Sanka, Shib Sankar Ganguli, V.P. Dimri, India) Ganguli, Shib Sankar (Scientist, Council of Scientific and Industrial Research -National Geophysical Research Institute, India) Dimri, V.P. (CSIR-National Geophysical Research Institute, Hyderabad, V. P. Dimri