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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Model for understanding thermal hysteresis during heat stress: a matter of direction
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Model for understanding thermal hysteresis during heat stress: a matter of direction

机译:理解热应力过程中热滞的模型:方向问题

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Thermal hysteresis may be used to quantify and characterize the amount of heat stress an animal experiences. Heat stress studies of farm animals suggest that above a certain threshold body temperature (Tb) is driven by ambient temperature (Ta). Patterns in the Tb-Ta phase diagram indicate the presence of hysteresis. When hysteresis is present, there are two values for Tb depending on whether Ta is increasing or decreasing. A theoretical delay-relay model is proposed to illustrate the hysteretic dynamics of the Tb-Ta relationship when Ta is cyclic. Two types of hysteresis, transitional and thermal, are identified. Thermal hysteresis becomes prominent when Ta forces Tb into an elliptical limit cycle. The area of the ellipse is an indication of the animal's heat load. Also, the resulting Tb-Ta pattern depends on the delay (or lag) between Tb and Ta. The delay suggests possible levels of heat stress. A greater delay between Tb and Ta indicates more time is needed to dissipate the heat load, implying the animal is suffering more heat stress. For a given Ta, the Tb on the decreasing (recovery) path is always higher than the Tb on the increasing (challenge) path. Essentially, the animal requires more energy to dissipate heat than to absorb it.
机译:热滞后可以用来量化和表征动物经历的热应激的数量。农场动物的热应激研究表明,高于某个阈值的体温(Tb)是由环境温度(Ta)驱动的。 Tb-Ta相图中的图案表示存在磁滞现象。存在磁滞时,取决于Ta是增加还是减少,Tb有两个值。提出了一个理论上的延迟继电器模型来说明当Ta为循环时Tb-Ta关系的滞后动力学。确定了两种类型的磁滞,过渡和热滞。当Ta迫使Tb进入椭圆极限循环时,热滞现象变得尤为突出。椭圆的面积表示动物的热负荷。而且,所得的Tb-Ta模式取决于Tb与Ta之间的延迟(或滞后)。延迟表明可能存在热应激水平。 Tb和Ta之间更大的延迟表示消散热负荷需要更多的时间,这意味着动物正承受更多的热应激。对于给定的Ta,减少(恢复)路径上的Tb始终高于增加(挑战)路径上的Tb。本质上,动物消散热量比吸收热量需要更多的能量。

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