Potential of solar thermal/PV generation for a district energy system and generating a community building electrical and thermal load profile

This research investigates means for achieving net zero energy dwellings and neighborhoods through maximizing solar potential of dwelling units, isolated and in assemblages. This study will help the community planner to design an efficient layout to achieve maximum solar fraction. Optimum combine building loads in community will lead to a more energy efficient mechanical and […]

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Study of potential technologies for Net-Zero Housing

With the escalating global warming and its detrimental effect on the environment, there is an urgent need to reduce fossil fuel burning to curtail greenhouse gas emissions. Buildings are one of the large energy consumers and their contribution to the global greenhouse gas emissions needs to be reduced. Net Zero Energy Homes generate the energy […]

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High-Resolution 3D Mapping and Modeling of Solar Neighbourhood Potential

This research project will be focused on the development of a new software technology in order to model and map maximum solar energy potential on the rooftops and facades of buildings with high spatiotemporal resolution, with particular emphasis on optimal community design for smart net-zero energy solar communities. The goal of this project is to […]

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Development of High Efficiency Compact Recuperators

Distributed Power Generation (DPG) offers a novel approach to reduce power losses. Micro-turbines (MT) are instrumental in the development of a high efficiency DPG system. The major drawback is the associated wasted heat. Increasing the viability of DPG is directly linked with the development of higher efficiency MTs. MTs equipped with a recuperator preheating the […]

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Investigation of suitability and feasibility of home dialysis – An Evaluation to enhance capacity planning

Chronic Kidney Disease can require patients to undergo dialysis or transplantation as treatment options. Ontario Renal Network (ORN) is responsible for setting the strategic direction of services, their aim is to improve the quality of life of every patients. The project will try to define suitability criteria for home dialysis patients by analyzing historic patient […]

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Hybrid Small UAV Powerplant

An analysis is to be conducted to investigate the integration of a hybrid power system for a small unmanned aerial vehicle (UAV). A hybrid power system is proposed as a substitute to the existing batteries to enhance the endurance of UAV systems. A UAV with flexible PV‐panels and a proton exchange membrane fuel cell is […]

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Enhancement of Turbulence Models for Airframe Flow Simulations

The numerical simulation of turbulent flows is an important component in the process of the aircraft aerodynamic design and development. The computational Fluid Dynamics (CFD) solvers used for predicting the aerodynamic forces and moments should be capable of accurately predicting turbulence effects. Such accuracy is crucial to efficiently design aircrafts with improved quality and performance. […]

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Development of Antibacterial/Antiwear Polymer Based Nano-composite Coating for Circulation Coins

The Royal Canadian Mint is a world-class producer of circulation and non-circulation coins for Canada and other countries and aggressively conducting and supporting research and development to meet customer requirements and social/environmental wellbeing. One of future strategies at The Royal Canadian Mint is to produce antibacterial Canadian circulation coins, reducing the potential spread of bacterial […]

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Energy Assessment and Cost-Benefit Analysis for selected industrial and commercial Enbridge Gas Distribution (EGD) Customers

The objective of this proposal is to do energy assessment and cost-benefits analyses among selected industrial and commercial Enbridge Gas Distribution (EGD) customers, engaging Ryerson faculty and students. EGD operates defamed side management (DSM) programs to encourage its industrial customers to adopt energy saving equipment and strategies to reduce the natural gas consumption. As a […]

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Development of high surface quality and large static displacement translating micromirror for MEMS FTIRS with application to alcohol interlock

This project is to develop a micromirror with large static translation displacement and high surface quality by combining two microfabrication processes. Based on the developed micromirror, the next generation alcohol interlock technology, i.e., MEMS (MicroElectroMechanial System) FTIRS alcohol interlock will be developed and commercialized in collaboration with ACS to overcome the limitations of the current […]

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