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Respiratory heat loss in the sheep: a comprehensive model

机译:绵羊呼吸热损失:综合模型

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摘要

A model is presented for the respiratory heat loss in sheep, considering both the sensible heat lost by convection (C-R) and the latent heat eliminated by evaporation (E-R). A practical method is described for the estimation of the tidal volume as a function of the respiratory rate. Equations for C-R and E-R are developed and the relative importance of both heat transfer mechanisms is discussed. At air temperatures up to 30 degreesC sheep have the least respiratory heat loss at air vapour pressures above 1.6 kPa. At an ambient temperature of 40 degreesC respiratory loss of sensible heat can be nil; for higher temperatures the transfer by convection is negative and thus heat is gained. Convection is a mechanism of minor importance for the respiratory heat transfer in sheep at environmental temperatures above 30 degreesC. These observations show the importance of respiratory latent heat loss for thermoregulation of sheep in hot climates.
机译:针对绵羊的呼吸热损失,提出了一个模型,同时考虑了对流损失的显热(C-R)和蒸发产生的潜热(E-R)。描述了一种实用的方法,用于根据呼吸频率估算潮气量。建立了C-R和E-R的方程,并讨论了两种传热机制的相对重要性。在高达30摄氏度的空气温度下,绵羊在空气蒸汽压力高于1.6 kPa时呼吸呼吸损失最少。在40摄氏度的环境温度下,显热的呼吸损失可能为零;对于较高的温度,对流传递为负,从而获得热量。对流是绵羊在高于30摄氏度的环境温度下进行呼吸传热的重要机制。这些观察表明,呼吸潜热损失对于炎热气候下绵羊的体温调节很重要。

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