In design a natural ventilation system for animal shed it is necessary to assess the ventilation induced by thermal buoyancy and wind forces during different seassons and under different animal housing conditions. The ratio of thermal buoyance and wind was established and the methodology was prepared to forecast ventilation intensity based on the calculations of air speed in inlet and outlet openings. The equation was formed to calculate the ratio of size inlet and outlet areas. The accuracy of the methodology was approved by experimental research under natural conditions of barn operation. The difference between the experimental and calculated air speed values in the ouitlet opening was insignificant and was within 0-8% range. According to...
An efficient natural ventilation system in dairy cattle buildings is essential both for animal welfa...
Using the rules of thermophysics, aerodynamics and mathematics, it was analysed how the construction...
It was composed the formula for calculating the heat transfer coefficient of a building surface. Thi...
In designing a natural ventilation system for animal shed it is necessary to assess the ventilation ...
Ventilation is a key element in the successful operation of any animal production facility. In desig...
In designing a natural ventilation system for animal shed, it is necessary to assess the ventilation...
Projektuojant tvarto natūralaus vėdinimo sistemą, reikia įvertinti gravitacinės ir vėjo jėgos skirti...
In Baltic states the construction of the uninsulated cowsheds increased. The natural ventilation sys...
Good ventilation system in livestock buildings is necessary for removing excess moisture and heat an...
In livestock housing permeable windbreak materials are regularly used at eave openings to reduce the...
The size of all sensible heat balance components in livestock building varies in time, because it de...
In livestock buildings the ventilation rate influences both the pollutant emission rates and animal¿...
The microclimate in livestock buildings must meet all zoohygienic requirements. The ambient airflow ...
In livestock farming the climate within an animal house is a dominant factor for animal welfare. The...
Relative air humidity is important microclimate parameter of each livestock building. Increased air ...
An efficient natural ventilation system in dairy cattle buildings is essential both for animal welfa...
Using the rules of thermophysics, aerodynamics and mathematics, it was analysed how the construction...
It was composed the formula for calculating the heat transfer coefficient of a building surface. Thi...
In designing a natural ventilation system for animal shed it is necessary to assess the ventilation ...
Ventilation is a key element in the successful operation of any animal production facility. In desig...
In designing a natural ventilation system for animal shed, it is necessary to assess the ventilation...
Projektuojant tvarto natūralaus vėdinimo sistemą, reikia įvertinti gravitacinės ir vėjo jėgos skirti...
In Baltic states the construction of the uninsulated cowsheds increased. The natural ventilation sys...
Good ventilation system in livestock buildings is necessary for removing excess moisture and heat an...
In livestock housing permeable windbreak materials are regularly used at eave openings to reduce the...
The size of all sensible heat balance components in livestock building varies in time, because it de...
In livestock buildings the ventilation rate influences both the pollutant emission rates and animal¿...
The microclimate in livestock buildings must meet all zoohygienic requirements. The ambient airflow ...
In livestock farming the climate within an animal house is a dominant factor for animal welfare. The...
Relative air humidity is important microclimate parameter of each livestock building. Increased air ...
An efficient natural ventilation system in dairy cattle buildings is essential both for animal welfa...
Using the rules of thermophysics, aerodynamics and mathematics, it was analysed how the construction...
It was composed the formula for calculating the heat transfer coefficient of a building surface. Thi...