Javascript must be enabled to continue!
Modeling Airflow and Temperature in a Sealed Cold Storage System for Medicinal Plant Cultivation Using Computational Fluid Dynamics (CFD)
View through CrossRef
Effective air circulation is crucial for plant growth, requiring adequate airflow and environmental stability. This study utilized Computational Fluid Dynamics (CFD) to analyze airflow patterns in a controlled testing chamber, focusing on how miniature fan placement affects airflow direction and temperature distribution. Ten case studies were conducted, with the CFD model validated against experimental data collected from six monitoring locations on the plant growth table. Model validation was performed using statistical analyses including coefficient of determination (R2), root mean square error (RMSE), and mean absolute error (MAE). The validation results showed strong agreement between simulated and experimental data, with R2 values of 0.92 for temperature and 0.89 for airflow velocity. Statistical analysis showed significant differences in both airflow and temperature models at the 0.05 level, with the CFD model validation yielding an RMSE of 2.02 and an average absolute error of 1.17. Among the tested configurations, case M1 achieved the highest air velocity (0.317 m/s) and lowest temperature (27.03 °C), compared to M2 (0.255 m/s, 27.17 °C) and M3 (0.164 m/s, 27.18 °C). The temperature variations between cases significantly impacted cold storage efficiency, with case M1’s superior airflow distribution providing more uniform cooling. These findings offer practical guidelines for optimizing ventilation system design in medicinal plant cultivation facilities, particularly in maintaining ideal storage conditions through strategic fan placement and airflow management.
Title: Modeling Airflow and Temperature in a Sealed Cold Storage System for Medicinal Plant Cultivation Using Computational Fluid Dynamics (CFD)
Description:
Effective air circulation is crucial for plant growth, requiring adequate airflow and environmental stability.
This study utilized Computational Fluid Dynamics (CFD) to analyze airflow patterns in a controlled testing chamber, focusing on how miniature fan placement affects airflow direction and temperature distribution.
Ten case studies were conducted, with the CFD model validated against experimental data collected from six monitoring locations on the plant growth table.
Model validation was performed using statistical analyses including coefficient of determination (R2), root mean square error (RMSE), and mean absolute error (MAE).
The validation results showed strong agreement between simulated and experimental data, with R2 values of 0.
92 for temperature and 0.
89 for airflow velocity.
Statistical analysis showed significant differences in both airflow and temperature models at the 0.
05 level, with the CFD model validation yielding an RMSE of 2.
02 and an average absolute error of 1.
17.
Among the tested configurations, case M1 achieved the highest air velocity (0.
317 m/s) and lowest temperature (27.
03 °C), compared to M2 (0.
255 m/s, 27.
17 °C) and M3 (0.
164 m/s, 27.
18 °C).
The temperature variations between cases significantly impacted cold storage efficiency, with case M1’s superior airflow distribution providing more uniform cooling.
These findings offer practical guidelines for optimizing ventilation system design in medicinal plant cultivation facilities, particularly in maintaining ideal storage conditions through strategic fan placement and airflow management.
Related Results
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
BACKGROUND
Access to potable drinking water and sufficient sanitation continues to be an urgent global concern, particularly in developing regions where con...
The Potential of Medicinal Plants and Bioactive Compounds in the Fight Against COVID-19
The Potential of Medicinal Plants and Bioactive Compounds in the Fight Against COVID-19
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), a novel coronavirus , is causing a serious worldwide COVID-19 pandemic. The emergence of strains with rapid spread and...
Plant Factory Airflow Distribution Analysis with Different Inlet Configuration
Plant Factory Airflow Distribution Analysis with Different Inlet Configuration
Airflow is important in plant factories as it is responsible for the air exchange inside the structure to create desired growing conditions for plants. A uniform airflow distributi...
Thermal energy storage with tunnels in different subsurface conditions
Thermal energy storage with tunnels in different subsurface conditions
The widespread use of the underground and global climate change impact the urban subsurface temperature. Changes in the subsurface environment can affect the performance of undergr...
An Ethno-Pharmacologic Survey of Medicinal Plants in Ethiopia: A Systematic Review for Establishing Medicinal Plant Park Research Project in the Case of West and South West Oromia Forest Ecologic Areas, West Ethiopia
An Ethno-Pharmacologic Survey of Medicinal Plants in Ethiopia: A Systematic Review for Establishing Medicinal Plant Park Research Project in the Case of West and South West Oromia Forest Ecologic Areas, West Ethiopia
Background and objective: Globally the estimate of medicinal plant species range from 35,000-50,000 species and out of this about 4000-6000 species have entered the world market of...
Computational Fluid Dynamics in Wind Energy: Modeling and Optimization for Turbine Design
Computational Fluid Dynamics in Wind Energy: Modeling and Optimization for Turbine Design
Renewable energy sources are hard to come by, but wind power has become one of the most popular options because it can make a lot of clean electricity. For wind energy to be used p...
Generative Machine Learning Models for Airflow Prediction of Architectural Spaces
Generative Machine Learning Models for Airflow Prediction of Architectural Spaces
Buildings have been identified as one of the biggest contributors of negative environmental impacts worldwide, more specifically energy usage due to the use of air conditioning and...
CFD Simulation of the Airflow Distribution Inside Cube-Grow
CFD Simulation of the Airflow Distribution Inside Cube-Grow
Cube-Grow was developed by MARDI to promote urban agriculture to the urban population. The product enables urban people to grow their vegetables with limited space. The initial tes...

