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Modeling skin temperature to assess the effect of air velocity to mitigate heat stress among growing pigs

机译:塑性温度来评估空气速度效果,减轻生长猪的热应激

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It is generally accepted that increased air velocity can help to mitigate heat stress in livestock housing, however, it is not fully clear how much it helps and significant uncertainties exists when the air temperature approaches the animal body temperature. This study aims to develop a skin temperature model to generated data for determining the potential effect of air velocity to mitigate heat stress among growing pigs housed in warm environment. The model calculates the skin temperature as function of body temperature, air temperature and the resistances for heat transfer from the body to the skin and from the skin to the surroundings. The latter is modelled as the united resistance for convection, radiation and evaporation. The model considers that the thermal heat load affects the tissue resistance, the body temperature and the evaporation from the skin, which is managed by modeling the tissue resistance, the body temperature and evaporation from the skin as functions of the skin temperature.The results indicate that the combination of an air temperature of 24 °C and an air velocity 0.2 m/s results in the same skin temperature as the combinations of 27 °C and 0.6 m/s, and of 30 °C and 1.9 m/s.
机译:通常接受的是,增加的空气速度可以有助于减轻牲畜壳体中的热应力,但是,当空气温度接近动物体温时,尚不完全清楚它有所帮助和显着的不确定性。该研究旨在开发皮肤温度模型,以产生用于确定空气速度潜在影响的数据,以减轻在温暖环境中的生长猪之间的热应激。该模型根据体温,空气温度和从身体传递到皮肤和从皮肤到周围环境的函数来计算皮肤温度。后者被建模为对流,辐射和蒸发的联合抵抗。该模型认为热量热负荷影响组织阻力,体温和从皮肤的蒸发,这是通过根据皮肤温度的函数来建模组织阻力,体温和从皮肤蒸发来管理的。结果表明24°C的空气温度和空气速度为0.2m / s的组合导致与27℃和0.6米/秒的组合相同的皮肤温度,30°C和1.9m / s。

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