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Field
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morphology from URA and greenery inventories from NParks—to support neighbourhood-scale simulations using the Open Foam and urbanMicroclimateFoam CFD models. These simulations evaluate how urban form
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Resilinet Battery Room Design for Next-Gen Electric Habour. The project is in collaboration with two local industry collaborators. Under this job title, you will develop a CFD modelling platform to evaluate
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studies in MMV settings. • Plan and execute controlled and longitudinal field experiments, ensuring high-quality data collection. • Conduct CFD simulations to assess the performance of diverse MMV
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Research Infrastructure (ACCESS-NRI), and is focused on coupling the Ice-sheet and Sea-level System Model (ISSM) with the ACCESS-AM3 atmosphere model. The long-term goal is to integrate this coupling
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Energy Modelling and Simulation. The Dworkin group focuses primarily on numerical modelling, but also performs some experiments as needed for certain projects. The group currently has 2 Postdoctoral
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other national and international partners. The PhD project is focused on quantifying the role of blowing snow in driving accumulation and sublimation in mountainous conditions. The simulation of blowing
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of blowing snow in driving accumulation and sublimation in mountainous conditions. The simulation of blowing snow in local and regional climate models is poorly constrained, leading to uncertainties in
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simulations) to propose solutions. The Research Fellow will be responsible to study through modelling the resilience of the solutions using climate change weather data. Close collaboration with all project
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allocation and thermal management to achieve optimal performance (iii) Model-in-the-Loop (MIL) validation to simulate components and connected systems to predict thermal behaviour and system
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architecture design, simulations, and publicly available genomic datasets to develop new inference methods. The Postdoctoral Associate will conduct research related to creating or testing deep learning models