Structural performance of novel sandwich panels under flexural, shear and axial loadings

Rising material costs, lack of quality control, labour shortages, challenging climates and significant on-site waste continue to be the challenges encountered by the Canadian construction industry. The collaboration between the research team and NEXII aims to develop the much-needed technical know-how for the new generation building panel products to address these challenges. This research concentrates […]

Read More
Exploring Alternatives with Design Analytics Interfaces: A Human-Centered Approach for Integrating Generative Design and Performance Assessment with Machine Learning-Based Surrogate Modelling

Designing built environments is a complex process that involves generating and evaluating alternative solutions using computational tools. In the Architecture, Engineering, and Construction (AEC) industry, designers use generative design methods to explore a larger number of alternatives and ML-driven rapid performance prediction to identify potential issues early on. However, separating these tasks hampers creative flow […]

Read More
Development of AI-based decision system for facility safety using computer vision and non-destructive technology

This project is a collaboration between Korea’s Soongsil University NDT Lab and Canada’s Waterloo University Computer Vision for Smart Structure Lab (CViSS), aiming to promote new research at each institute and build smart construction and infrastructure monitoring. NDT Lab focuses on developing non-destructive engineering technologies for concrete internal crack width, reinforcing bar diameter and internal […]

Read More
Nonlinearity of cold recycled bituminous mixtures

Nowadays, the topic of environmental sustainability and eco-friendly materials is present in every area of daily life. This research project, in the field of civil engineering, deals with the study of particular materials used for the construction of road pavements that have as their strong point the fact that they are recycled from existing pavements […]

Read More
Green House Gas Data Metrics & Analysis

The purpose of this initiative is to analyze existing data to determine units of measurement and key performance indicators that will determine if a net reduction in GHG’s are truly being achieved. This will go deeper in also determining the benefits of utilized recycled materials such as asphalt, concrete, cement powder and aggregates. The benefits […]

Read More
Building Footprint Extraction from Remotely Sensed Data

The primary objective of this project is to automatically extract accurate footprint maps of buildings from remotely sensed data such a satellite/aerial images. In recent times, deep learning approaches have shown significant progress and success in processing remote-sensing image data. Most prevailing techniques used for this task often involve using pixel-level classification deep learning techniques […]

Read More
Création d’un positioneur vertical autonome pour excavatrice

Les engins de chantier utilisés dans l’industrie de la construction, tels que les excavatrices, sont très coûteux d’utilisation et il est important de développer des aides électroniques permettant d’optimiser leur usage. Une façon efficace de le faire est de pouvoir suivre en temps réél le déplacement des parties fonctionnelles de l’engin afin de s’assurer en […]

Read More
Multi-hazard Risk & Resilience Assessment for Real Asset Decision-Support (continuation) – Asset Interdependency Risk

The proposed project is an extension of a previous project “Multi-hazard Risk & Resilience Assessment for Real Asset Decision-Support” which aims to develop a methodology and software for performing rapid high-resolution multi-hazard risk assessment for asset portfolios by combining commercial/publicly available hazard models with high-resolution vulnerabilities derived from multi-physics simulations of different asset archetypes. The […]

Read More
Modélisation de la vulnérabilité et risques de chutes de blocs pour les parois rocheuses naturelles et fabriquées

Le projet de recherche proposé sera effectué en collaboration avec Hydro-Québec et a pour objectif une meilleure compréhension des mécanismes à l’origine de l’instabilité des parois rocheuses par une analyse de quelques cas répertoriés dans le cadre du projet hydroélectrique de La Romaine. La méthodologie proposée comporte trois volets : i) Des analyses numériques par […]

Read More
Augmented Reality in Architectural Praxis

This project examines to the innovative use of Augmented Reality (AR) technologies that have yet to be fully integrated in the Architecture, Engineering, and Construction (AEC) industry. The research focuses on the capacity of AR to bridge the gap between design and construction. The role of the student is to conduct an initial literature review […]

Read More