Engineering


Judy Yang

Judy Yang

  • Postdoctoral Research Fellow, Applied AI for Forestry Weed Detection and Mapping
  • judy.yang@jcu.edu.au
Alzayat Saleh

Alzayat Saleh

Nico Adams

Nico Adams

Elsa Antunes

Elsa Antunes

Eric Wang

Eric Wang

Optimisation of QCIDE oil extraction and separation (Old ID 26712)
Yinghe He
26 Aug 2019 - 26 Aug 2021
This is project for Research Master Degree at JCU. Investigation of the pre-treatment, distillation and separation parameters of QCIDE extraction in order to assess the viability of industrial QCIDE production.
Pathways for performance improvements of organic light emitting diodes (Old ID 27152)
Bronson Philippa
01 Jan 2021 - 25 Apr 2026
Organic light-emitting diodes (OLEDs) represent the next generation technology for displays and lighting. Despite their rapid uptake, one of the factors limiting their application in lighting is the efficiency roll-off at high brightness. This project aims to work towards solutions for this problem using an innovative combination of simulation studies and experimental work. Expected outcomes include improved theoretical and experimental approaches leading to new design rules for OLEDs. This should provide significant benefits such as a pathway for development of improved efficient, high brightness OLEDs for applications in low energy consumption lighting and long-lasting, bright displays.
Optimisation of internal pressure for designing industrial buildings (Old ID 21871)
John Ginger
14 Oct 2015 - 31 Dec 2020
The internal pressure in a building is dependent on the sizes of openings in the envelope, and its volume and flexibility, and is a critical loading parameter in building design. Post windstorm damage investigations have shown that incorrect internal pressures are frequently used in building design leading to damage. This project will study the internal pressures generated in buildings with a range of volumes and openings in the envelope. A combination of model scale and full scale tests and theoretical analysis will e used to determine critical parameters for highly turbulent air-flow through openings. Results will be used to revise design data in codes and produce guidelines for consistent, optimal design of industrial type buildings.
MINJAR GOLD - INVESTIGATION OF THE INFLUENCE OF CLAY ON GOLD EXTRACTION (Old ID 27376)
Elsa Antunes
22 Feb 2021 - 30 Nov 2021
The main objective of this thesis is to explore possible ways of mitigating issues associated with the presence of clay in a Carbon in Pulp (CIP) plant. It is hypothesized that heat treatment is an effective way of eliminating these issues as well as providing several subsequent benefits such as improvements to grinding and recovery. Yet, the efficacy of heat treatment is largely determined by the characteristics unique to each clay species. Thus, preliminary testing using equipment in the James Cook University Analytical Centre such as the Scanning Electron Microscope (SEM), X-ray Diffraction (XRD) and Thermogravimetric Analysis (TGA) is necessary. This will provide the optimal heat treatment temperature, where the impacts of the heat treatment on viscosity in these conditions can be determined. Furthermore, secondary benefits such as improvements to recovery and grinding will also be quantified. This method allows for a thorough understanding of the impacts of heat treatment and will determine whether it is an effective approach to mitigating issues associated with the presence of clay.
Automated Catch'n'Release Anchor Retrieval Device Reliability Test and Materials Research (Old ID 26292)
Eric Wang
02 Jan 2019 - 02 Jul 2019
The Catch'n'Release Anchor Retrieval Device provides the safest and most sustainable way to retrieve your anchor. Specifically designed for recreational vessels, the device is easy to attach and in just seconds the anchor is pulled up the same way it went down. The device is designed to be used every time you head out on the boat and serves to protect precious marine habitats by minimising damage while promoting a safet boating experience. However, to prove its reliability, the device will have to pass thousands of connect and disconnect test cylces, which is apparantly not viable via manual operation. Therefore, this project aims to develop a solution for automated Catch'n'Release Anchor Retrieval Device reliability test, which can perform the connect-disconnect process automatically thousands of times. On top of that, corrosion and braking tests will be also introduced between every 500 test cycles to simulate the practical usage cases of this device.
ITS and UCS Tests on Rock Cores (Old ID 23055)
Siva Sivakugan
01 Oct 2016 - 01 Dec 2016
The rock cores will be provided by Mt Carlton. They will be cut to length to diameter ratios of 2.5 and 0.5 for the uniaxial compressive strength test and indirect ensile strength tests, respectively. The UCS tests involved developing stress-strain plots and determining the uniaxial compressive strength and the Young's modulus. The indirect tensile strength requires the determination of the Is values. The client will be provided with a report that includes all results and photographs of the failure specimens.
GBRF Burdekin Irrigation Project. (Old ID 27063)
Eric Wang
15 Jan 2020 - 01 Jun 2024
Increasing Industry Productivity and Profitability Through Transformational, Whole of Systems Sugarcane Approaches that Deliver Water Quality Benefits.
Joint Huawei-JCU Internet of Things Laboratory (Old ID 23113)
Wei Xiang
19 Dec 2016 - 31 Dec 2021
To enable the collaboration on opportunities that include: a) establishing a joint Huawei-JCU Internet of Things (loT) Laboratory: b) use the joint loT Lab to promote strong academic-industry collaboration; leveraging on Australia's first loT Engineering degree program run by JCU etc.
Light Field Video Compression and Streaming (Old ID 23155)
Wei Xiang
01 Mar 2017 - 01 Mar 2019
Recent advances in light field (LF) photography open a new horizon for digital video streaming, where the single-shot LF capture and glasses-free 3D display capabilities are perfect for a wide range of 3D interactive applications. This proposal aims to propose an interactive 3D VR streaming system based upon the state-of-the-art LF video compression and transmission technology. The proposed new framework and novel algorithms will be able to efficiently compress the enormous amounts of LF-based VR video data, ensure the quality of the views of interest, and achieve low-latency and error-resilient 3D video transmission.
Council improving the water quality of the Great Barrier Reef through the use of smart sensors and the IoT for urban water management (Old ID 23533)
Wei Xiang
01 Feb 2018 - 30 Jun 2019
The primary aim of this grant application is to bring smart city technology into urban water management to improve urban water quality discharging to the Great Barrier Reef by: 1). Developing IOT technology to manage large data sets obtained from existing smart meters and water quality monitoring probes to make effective management decisions; and 2) Supporting the development of new cost effective, real time water quality monitoring technology. This grant application is for purchase of commercially available water quality monitoring probes suitable for a tropical urban stormwater environment, for supporting the development of new real time monitoring technology for nutrients; for the development of data analysis tools using IOT technology for both smart meter water consumption data, sewer pump station overflow data and stormwater water quality data so that the data is available in real time and can be used for effective decision making.
Start Date: 01 Jan 2010
End Date: 01 Jan 2015
Start Date: 01 Jan 2004
End Date: 01 Jan 2006
Start Date: 01 Jan 2010
Reseracher: Mohan Jacob (Professor)
Start Date: 01 Jan 2012
Reseracher: Mohan Jacob (Professor)
Start Date: 01 Jan 2015
Reseracher: Mohan Jacob (Professor)
Start Date: 01 Jan 2015
Start Date: 01 Jan 2013
Start Date: 01 Jan 2010
Start Date: 01 Jan 2006
Start Date: 01 Jan 2006