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29 July 2019 | Story Leonie Bolleurs
Dr Martin Clark
Dr Martin Clark, the founder of the MAGIC (Multi-purpose Aerial Geological Image Classification) initiative. MAGIC can obtain geological and structural information that is critical for making informed decisions in exploration and mineral extraction processes.

Mining has historically been described as a boom-and-bust industry, where fluctuations in mineral prices could result in extreme success or bankruptcy. Successful mining companies closely monitor assets/expenditures, risks, and other parameters associated with their business to best ensure their longevity. In most mineral industries, there are a few competitors that dominate the delivery of a mineral resource. As a result, technological development, along with other factors, are critical to ensure that these companies’ business remains viable and protected.

This is according to post-doctoral fellow in the Department of Geology, Dr Martin Clark.

Drone technology: better, faster, safer

He says technological development in mining generally translates to how a company can extract a resource from the ground better, faster, and safer. 

Dr Clark believes the rapid development of drone technology represents a shift in the toolbox that mining companies can employ.

“Drones can collect a great deal of data randomly over vast or small areas within hours, historically accomplished by mapping campaigns which can last months to years. Drones can also collect data in areas which are difficult and dangerous for humans to get to. These include cliff faces or rock walls that are difficult and dangerous to get close to, as well as stretches of land where dense vegetation, inaccessible terrain, and even atmospheric dangers become factors which reduce or modify the scope of exploration work,” he said. 

Expanding application of drones

Dr Clark’s work specifically focuses on expanding the applications for which drones are used. “I assess what and how good the imaging capabilities of drones are, use the imagery to generate 3-D models to drive scientific observation, and yield results which can help companies to extract resources. This initiative is called MAGIC (Multi-purpose Aerial Geological Image Classification),” he said. 



“MAGIC aims to collect geological and structural information that is critical for making informed decisions in exploration and mineral extraction processes,” he added.

Dr Clark is not only the founder of MAGIC; he also drives multiple aspects of the initiative including education, research, and business development. 

In 2013, when he was busy with his doctorate, there was already a spark of interest in using drones to address geological questions. At that time, Dr Clark was working with remotely sensed high-resolution LiDAR imagery to better understand geological structures at the Sudbury Mining Camp in Canada. The interest became a reality in 2018, when he applied this initiative during his post-doctoral fellowship at the UFS.

Now and the future

“At present, there are no direct mining projects underway, but projects are expected to begin in 2020. Drone operation and image-analysis techniques are currently being refined for industry,” he said. 

Besides his work with drones, Dr Clark also work in the fields of structural geology, remote sensing, and geospatial data analysis.  

News Archive

Spanish academic discuss frameworks for successful higher education
2013-08-29

Prof Melanie Walker, Senior Research Professor at CHECaR, Prof Sandra Boni and Dr Sonja Loots, Postdoctoral Research Fellow at the CHECaR seminar.
29 August 2013
Photo: Thabo Motsoane

In the latest Centre for Higher Education and Capabilities Research (CHECaR) seminar, Prof Sandra Boni from the Universidad Politécnica de Valencia in Spain presented on ‘Competencies in Higher Education: A Critical Analysis from the Capabilities Approach.’ The presentation focused on the significant transformation taking place in universities and how that is affecting teaching and learning practices. The competencies approach plays a key role in this transformation process by associating the mastering of certain skills with successful completion of higher education qualifications.

Prof Boni and her colleagues argue that the competencies approach is flawed and too narrow to be used in evaluating successful higher education and that a broader human development perspective has to be applied. She argues that the capabilities approach represents a more inclusive framework for guiding the holistic development of students through the expansion of all human choices to achieve what they value most, not just to benefit economically from education. The inclusion of the human development framework in universities’ training would lead to generating ‘public-good professionals’ who are equipped prepared with the necessary competencies to enter their chosen career – but who will also be the bearers of a social consciousness.

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