The CFD analysis component performs simulation with the new boundary conditions, and the post-processed data are exported as Virtual Reality Modeling Language (VRML) models. The sensor data component tracks temperature and velocity changes that occur within a room and updates the boundary conditions for simulation. This model includes four components: wireless sensor data, CFD analysis, Human–Computer Interaction (HCI), and AR visualization. The paper introduces a Human–Building Interaction (HBI) model that allows for the efficient exploration of Computational Fluid Dynamics (CFD) data sets in real time. This paper presents an interactive speech and gesture recognition-based, immersive Augmented Reality (AR) model designed to visualize and interact with buildings and their thermal environments.
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