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- W2185919541 abstract "In Korea, the demand for broiler consumption continues to increase while the agricultural population in animal and livestock production continues to decrease. This scenario prompts poultry producers to venture on large scale production systems. To ensure maximum production, the thermal suitability as well as the air uniformity inside the broiler house must be maintained. However, in large scale production facilities, the environmental conditions such as temperature and air quality are very difficult to control. The four distinguishable seasons of the country make it more complex. The internal environmental condition is greatly influenced by the design of the ventilation system which is very critical. Investigating the internal conditions affected by the ventilation design through field experiment is the ideal method, however restricted because of limited measuring points. Therefore, computational fluid dynamics (CFD) which is a powerful tool to study fluid movements was used in this study. The FLUENT program was employed using the three-dimensional large eddy simulation (LES) model for six broiler structures with a forced-ventilation system design. Data measured during the cold season and other environmental conditions in Korea was used in the simulation. The tracer gas decay method was used to investigate the CO2 distribution as well as validate the model. The suitability, uniformity and stability of temperature and air quality were analyzed at the breeding section at a height of approximately 0.4 m." @default.
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- W2185919541 date "2010-07-06" @default.
- W2185919541 modified "2023-09-26" @default.
- W2185919541 title "Cfd analysis and comparison of forced-ventilation systems of poultry houses in korea" @default.
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