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首页> 外文期刊>Biology Letters >Emperor penguin body surfaces cool below air temperature
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Emperor penguin body surfaces cool below air temperature

机译:皇帝企鹅身体表面冷却低于空气温度

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摘要

Emperor penguins Aptenodytes forsteri are able to survive the harsh Antarctic climate because of specialized anatomical, physiological and behavioural adaptations for minimizing heat loss. Heat transfer theory predicts that metabolic heat loss in this species will mostly depend on radiative and convective cooling. To examine this, thermal imaging of emperor penguins was undertaken at the breeding colony of Pointe Geologie in Terre Adelie (66 degrees 40' S 140 degrees 01' E), Antarctica in June 2008. During clear sky conditions, most outer surfaces of the body were colder than surrounding sub-zero air owing to radiative cooling. In these conditions, the feather surface will paradoxically gain heat by convection from surrounding air. However, owing to the low thermal conductivity of plumage any heat transfer to the skin surface will be negligible. Future thermal imaging studies are likely to yield further insights into the adaptations of this species to the Antarctic climate.
机译:皇帝企鹅猿潘尔特提斯(Eventytes)在苛刻的南极气候中能够在最小化热量损失的专业解剖学,生理和行为适应的情况下存活。 传热理论预测该物种的代谢热量大部分依赖于辐射和对流冷却。 要检查这一点,在2008年6月,南极洲Pointe Geologie的Pointe Geologie的繁殖殖民地进行了皇帝企鹅的热成像。在2008年6月的南极洲。在晴空条件下,身体的大多数外表面 由于辐射冷却,比周围的零空气更冷。 在这些条件下,羽毛表面将通过周围空气的对流矛盾地获得热量。 然而,由于羽毛的羽毛的热导电率低,任何传热到皮肤表面都会忽略不计。 未来的热成像研究可能会进一步了解本物种对南极气候的改编。

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