巴布亚企鹅(Pygoscelis papua)成年和幼雏的辐射热损失和暖足的重要性。

R P Wilson, D Adelung, L Latorre
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引用次数: 19

摘要

成年企鹅和它们的幼崽在表面上的身体绝缘上有很大的不同。雏鸟全身覆盖着羽绒,而成年鸟则长着短而坚硬的羽毛,这是该家族的特征,因此两组之间的热量损失机制可能存在很大差异。我们通过测量南极洲巴布亚企鹅(Pygoscelis papua)的体表温度来研究辐射热损失。当时,人们认为这些鸟处于热中性区,几乎没有风。测量了正在繁殖的成年鸡和大型绒毛鸡的红外辐射与环境温度的关系。测量的28个体表部位均与环境温度呈正相关,但体表部位温度与环境温度的关系存在相当大的位点间差异。环境温度每升高一度,足部温度上升最快,其次是鳍状肢,其次是躯干。这种模式在雏鸟身上表现得尤为明显,这表明足部的特殊热损失能力可能抵消了鳍肢能力的下降。利用斯蒂芬-玻尔兹曼定律和巴布亚企鹅身体表面的初步数据,研究了辐射净传热。这表明,在地面温度为5到15摄氏度之间,总体热量传递基本保持不变,尽管躯干的辐射热损失减少,但这被鳍状肢和足部的热量传递增加所抵消。在相同的温度范围内,环境温度每升高一度,脚部的辐射传热比脚蹼快大约100倍。这一点和研究鸟类在恒定环境温度下脚部温度的双峰性表明,在热中性区,巴布亚企鹅的辐射热量损失主要是通过脚部进行的,血液通过脚部进行脉冲循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radiative heat loss in gentoo penguin (Pygoscelis papua) adults and chicks and the importance of warm feet.

Adult penguins and their chicks differ considerably in their apparent body insulation. The chicks are covered in down, whereas the adults have the short, hard body feathers characteristic of the family, so mechanisms of heat loss may vary considerably between the two groups. We examined radiative heat loss by measuring body surface temperatures of gentoo penguins (Pygoscelis papua) in Antarctica. At the time the birds were considered to be in their thermoneutral zone, and there was little or no wind. Measurements of infrared emission were made on breeding adults and in large downy, and thermally independent, chicks in relation to environmental temperature. All 28 external body surface sites measured were positively correlated with ambient temperature, although there was considerable intersite variability in the relationship between site temperature and ambient temperature. Foot temperature increased most rapidly per degree ambient temperature increase, followed by the flippers, followed by the trunk. This pattern was particularly pronounced in the chicks, indicating that the exceptional heat-loss capacities of the feet may counteract for the reduced capacity of the flippers. Net heat transfer by radiation was examined using Stefan-Boltzmann's law and preliminary data on the surface area of a gentoo penguin body. This showed that between ground temperatures of 5 degrees and 15 degrees C overall heat transfer remains essentially constant, although radiative heat loss from the trunk decreases, this being counteracted by increasing heat transfer from the flippers and feet. Over the same temperature range the specific radiation heat transfer of the feet increased approximately 100 times faster per degree ambient temperature increase than did that of the flippers. This and the bimodality in foot temperature found in the study birds even under constant ambient temperatures indicate that within the thermoneutral zone heat loss by radiation in gentoo penguins is primarily executed using the feet, through which the blood circulates in pulses.

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