Computational Fluid Dynamics (CFD) aerodynamic simulation of the patent-pending V-VAC-7 passive ventilation retrofit attachment. This study validates the programmatic parametric geometry designed to accelerate institutional (specifically focused on cross-ventilation) HVAC airflow velocity utilizing localized Venturi constriction matrix protocols and upper boundary wall Coanda effect layering. An effective fluid mixing integration recently tested and approved as an efficient method of cooling. (2024-2025) The objective is to optimize indoor climate infrastructure efficiency and verify thermal fluid mitigation dynamics without supplementary power consumption. A green tech solution in testing.
28misanesE created this project
6 days ago
Computational Fluid Dynamics (CFD) aerodynamic simulation of the patent-pending V-VAC-7 passive ventilation retrofit attachment. This study validates the programmatic parametric geometry designed to accelerate institutional (specifically focused on cross-ventilation) HVAC airflow velocity utilizing localized Venturi constriction matrix protocols and upper boundary wall Coanda effect layering. An effective fluid mixing integration recently tested and approved as an efficient method of cooling. (2024-2025) The objective is to optimize indoor climate infrastructure efficiency and verify thermal fluid mitigation dynamics without supplementary power consumption. A green tech solution in testing.