This project simulates the airflow distribution and CO2 concentration within an edible fungus incubation room (20m × 10m × 6m). The goal is to evaluate and optimize the ventilation system's efficiency in two aspects: (1) delivering fresh air directly to the respiration ports of the mushroom bags to support healthy mycelium growth, and (2) effectively removing CO2 generated by the mushroom bags to prevent accumulation and maintain optimal growing conditions. The simulation includes porous air ducts, exhaust fans, and evenly distributed culture racks. Results will guide the design of a high-efficiency ventilation strategy for the edible fungus cultivation facility.
chinaagaric created this project
about 1 month ago
This project simulates the airflow distribution and CO2 concentration within an edible fungus incubation room (20m × 10m × 6m). The goal is to evaluate and optimize the ventilation system's efficiency in two aspects: (1) delivering fresh air directly to the respiration ports of the mushroom bags to support healthy mycelium growth, and (2) effectively removing CO2 generated by the mushroom bags to prevent accumulation and maintain optimal growing conditions. The simulation includes porous air ducts, exhaust fans, and evenly distributed culture racks. Results will guide the design of a high-efficiency ventilation strategy for the edible fungus cultivation facility.