Research Project
Transforming Olive leaves waste into Sustainable Corrosion Inhibitors for a Greener Future
Abstract The project aims to address the environmental impact of olive leaf waste by converting it into a sustainable and eco-friendly solution. By utilizing advanced techniques, we extract natural compounds from olive leaves and transform them into a green corrosion inhibitor, offering an effective and renewable alternative for various industries while reducing waste and promoting a greener
Research Project
Sustainable Solutions for Single-Use Plates
Abstract Transforming bagasse, the fibrous residue of sugarcane processing, into eco-friendly single-use plates, this project innovatively addresses both environmental concerns and agricultural waste management. By harnessing advanced technologies, the project aims to produce durable and biodegradable plates, offering a sustainable alternative to traditional plastic tableware. Fund STDF Prototypes
Research Project
Prediction and mitigation of common steam line hanger failures
Abstract Repeated hanger failures were observed in the steam condenser reject lines of a multi-unit nuclear power station, attributed to shear fractures of the threaded end of the hanger rods. The failures occurred at the same location in the piping run, near a reducer and an elbow where the stream flow changes direction. While condensed steam water slug impact is a possibility, the primary cause
Research Project
Energy harvesting from vibrating flow devices
Abstract A square cylinder may gallop if subjected to fluid flow, experiencing a self-excited vibration mode that can harvest energy for low-power applications. The harvested power is typically low and depends on the upstream flow velocity and system dynamic parameters. In this project, the influence of nonlinear stiffness induced by two repulsive magnetic poles on the galloping response of square
Research Project
Prediction of flow-excited acoustic resonance in coaxial burners
Abstract In this project, numerical analysis models acoustic modes in cavities. Different cavities with various aspect ratios are used. The square cross-section cavity created a spinning mode. However, a small change from the square configuration created an attenuation of the amplitude, which impacts the mode. More importantly, the shear layer changed according to the acoustic mode behavior such
Research Project
Post Occupancy Evaluation –The Case Study of Nile University
Abstract "Sustainability has been one of the major overarching topics across industries over the past few years. Sustainability in the built environment is no exception and given the recent focus on climate change, it cannot be seen as a luxury anymore. However, sustainability should never come at the expense of the convenience of the building users nor on the architectural aesthetics. Accordingly
Research Project
Zero Waste in Construction
Abstract This research track is to study the construction and demolishing waste from different sides; the main reasons of the waste generation and how to avoid it by reducing the waste through the different stages of the construction project, the different methods of reusing the waste in new construction activities during the construction activities, the recycling of the rest of the construction
Research Project
Parabolic Trough solar collector
Abstract This project aims to revolutionize the design and optimization of multi-stage parabolic trough solar collectors (PTCs) to address the limitations of conventional PTC systems, such as inefficiency and high costs for home applications. The research focuses on developing a novel design that integrates multiple stages of heat absorption and transfer mechanisms, leveraging cutting-edge
Research Project
Solar energy systems for heat and power generation
Abstract The project focuses on a multidisciplinary approach aimed at evaluating the feasibility, cost-effectiveness, and sustainability of integrating solar thermal technologies into industrial and power applications. This research topic seeks to address the growing demand for sustainable energy solutions in industrial sectors while mitigating the environmental impact associated with conventional
Research Project
Flapping Micro Air Vehicle: Numerical Analysis
Abstract Due to the intricate aerodynamics of flapping micro air vehicles (FMAVs), numerical analysis plays a crucial role. These simulations predict the aerodynamics performance before building prototypes, saving valuable time and resources. By analysing the flapping wing's interaction with air, numerical analysis helps engineers optimize FMAV designs for specific tasks like search and rescue or