Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A New Anisotropic Singularity Algorithm to Characterize Geo-Chemical Anomalies in the Duolong Mineral District, Tibet, China

View through CrossRef
With the increasing exploitation of mineral resources by humans, exploring non-traditional areas for hidden resources such as deep earth and sediment-covered regions has become a significant challenge in the field of mineral exploration. Geochemical data, as a crucial information carrier of geological bodies, serves as one of the direct and effective sources for quantitative analysis of regional geological evolution and mineralization prediction studies. It plays an indispensable role in geographic information system (GIS)-based mineral exploration. Due to the neglect of spatial distribution characteristics and the variability of statistical features with spatial metrics in traditional statistical methods, this paper employs fractal/multifractal and the local singularity analysis to identify geochemical anomalies from background and characterize geochemical distributions associated with porphyry Cu-Au mineralization in the Duolong mineral district, Tibet, China. A novel algorithm for estimating the singularity index, which takes anisotropy into consideration, is proposed and practically applied to the Duolong district. By comparing with the isotropic singularity index, this new method objectively identifies anisotropic geochemical signatures and investigates non-linear behaviors of ore-forming elements, making it more practical and effective in geo-anomaly extraction. Furthermore, the current method is capable of indicating variations in geochemical distributions at different scales through directional arrows marking analytical windows. The summed-up direction of these multi-scale vectors effectively demonstrates migration trends of ore materials at each location within the study area. The new method can pinpoint the location of ore-forming element accumulation and migration directions, unlocking valuable insights from complex datasets. This promises to revolutionize our understanding of how minerals are formed and distributed within the Earth’s crust.
Title: A New Anisotropic Singularity Algorithm to Characterize Geo-Chemical Anomalies in the Duolong Mineral District, Tibet, China
Description:
With the increasing exploitation of mineral resources by humans, exploring non-traditional areas for hidden resources such as deep earth and sediment-covered regions has become a significant challenge in the field of mineral exploration.
Geochemical data, as a crucial information carrier of geological bodies, serves as one of the direct and effective sources for quantitative analysis of regional geological evolution and mineralization prediction studies.
It plays an indispensable role in geographic information system (GIS)-based mineral exploration.
Due to the neglect of spatial distribution characteristics and the variability of statistical features with spatial metrics in traditional statistical methods, this paper employs fractal/multifractal and the local singularity analysis to identify geochemical anomalies from background and characterize geochemical distributions associated with porphyry Cu-Au mineralization in the Duolong mineral district, Tibet, China.
A novel algorithm for estimating the singularity index, which takes anisotropy into consideration, is proposed and practically applied to the Duolong district.
By comparing with the isotropic singularity index, this new method objectively identifies anisotropic geochemical signatures and investigates non-linear behaviors of ore-forming elements, making it more practical and effective in geo-anomaly extraction.
Furthermore, the current method is capable of indicating variations in geochemical distributions at different scales through directional arrows marking analytical windows.
The summed-up direction of these multi-scale vectors effectively demonstrates migration trends of ore materials at each location within the study area.
The new method can pinpoint the location of ore-forming element accumulation and migration directions, unlocking valuable insights from complex datasets.
This promises to revolutionize our understanding of how minerals are formed and distributed within the Earth’s crust.

Related Results

Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Fractal/multifractal analysis in support of mineral exploration in the Duolong mineral district, Tibet, China
Fractal/multifractal analysis in support of mineral exploration in the Duolong mineral district, Tibet, China
The study area, Duolong mineral district, Tibet, China is not a well-developed area but has received attention in recent years due to its considerable production of Cu-Au resources...
Petrogenesis and Tectonics of the Naruo Porphyry Cu(Au) Deposit Related Intrusion in the Duolong Area, Central Tibet
Petrogenesis and Tectonics of the Naruo Porphyry Cu(Au) Deposit Related Intrusion in the Duolong Area, Central Tibet
AbstractThe Duolong area is the most important part of the Western Bangong‐Nujiang Suture Zone porphyry Cu(Au) metallogenic belt, in Tibet, China. Here new detailed data are presen...
Doklam Standoff Resolution: Interview of Major General S B Asthana by SCMP
Doklam Standoff Resolution: Interview of Major General S B Asthana by SCMP
(Views of Major General S B Asthana,SM,VSM, (Veteran), Questioned by Jiangtao Shi of South China Morning Post on 29 August 2017.Question 1 (SCMP)Are you surprised that the over 70-...
Wetting on flexible substrates
Wetting on flexible substrates
Wetting is an important phenomenon in industrial applications such as coating industry as it could affect the coating uniformity and production rate. In modeling dynamic wetting on...
Singularities Analysis of Basic Kinematic Chains and Complex Multiloop Planar Linkages
Singularities Analysis of Basic Kinematic Chains and Complex Multiloop Planar Linkages
Abstract This paper offers a general approach for the singularity analysis of arbitrary complex multiloop planar linkages. A complex linkage is regarded as one compo...

Back to Top