Arie Naftali Hawu Hede
This activity aims to develop an integrative methodology that combines Geographic Information Systems (GIS) and remote sensing technology to map hydrothermal deposits. This approach offers significant innovation in improving the efficiency and accuracy of identifying mineral and geothermal energy resources. The background to this research is based on the challenges of exploring hydrothermal deposits, which are often hampered by limited access, high costs and long duration using conventional methods. This research integrates geological data from field surveys with remote sensing data, including satellite imagery and thermal data, to more effectively identify geological characteristics and thermal anomalies associated with hydrothermal deposits.
The developed methodology will be validated through surveys field and laboratory analysis to ensure data-based results can be verified empirically. Expected outcomes include more accurate and efficient mapping of hydrothermal deposits, as well as new insights into the distribution and characteristics of these deposits, thereby supporting increased exploration of mineral and energy resources. S
to develop an integrative methodology that combines Geographic Information Systems (GIS) and remote sensing technology for mapping hydrothermal deposits.
Academic: The results of this research will be published in a reputable scientific journal, contributing to the development of science in the field of resource exploration. Industry: The efficient and accurate methodology can be used by the minerals and geothermal energy industries to reduce exploration costs and increase productivity. Environment: A data-driven approach can reduce the need for intensive field surveys, reducing environmental impacts.