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The role of moisture in the nest thermoregulation of social wasps

机译:水分在社会黄蜂巢温调节中的作用

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摘要

Paper nests of social wasps are intriguing constructions for both, biologists and engineers. We demonstrate that moisture and latent heat significantly influence the thermal performance of the nest construction. Two colonies of the hornet Vespa crabro were investigated in order to clarify the relation of the temperature and the moisture regime inside the nest. Next to fairly stable nest temperatures the hornets maintain a high relative humidity inside the nest. We found that in consequence a partial vapor-pressure gradient between nest and ambient drives a constant vapor flux through the envelope. The vapor flux is limited by the diffusion resistance of the envelope. The driving force of vapor flux is heat, which is consumed through evaporation inside the nest. The colony has to compensate this loss with metabolic heat production in order to maintain a stable nest temperature. However, humidity fluctuations inside the nest induce circadian adsorption and desorption cycles, which stabilize the nest temperature and thus contribute significantly to temperature homeostasis. Our study demonstrates that both mechanisms influence nest thermoregulation and need to be considered to understand the thermodynamic behavior of nests of wasps and social insects in general.
机译:社会黄蜂的纸巢对于生物学家和工程师而言都是令人着迷的构造。我们证明了水分和潜热会显着影响巢结构的热性能。研究大黄蜂黄蜂大黄蜂的两个殖民地,以澄清巢内温度与水分状况的关系。在相当稳定的巢温度下,大黄蜂在巢内保持较高的相对湿度。我们发现,结果是巢和环境之间的部分蒸气压梯度会驱动恒定的蒸气通量通过包膜。蒸气通量受到包壳的扩散阻力的限制。蒸气通量的驱动力是热量,热量通过巢穴内部的蒸发而消耗。为了保持稳定的巢温度,菌落必须通过代谢热量的产生来补偿这种损失。但是,巢内部的湿度波动会引起昼夜节律的吸附和解吸循环,从而稳定巢温度,从而显着促进温度的动态平衡。我们的研究表明,这两种机制都会影响巢穴的温度调节,因此通常需要考虑了解黄蜂和社交昆虫巢穴的热力学行为。

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  • 来源
    《Naturwissenschaften》 |2005年第9期|427-430|共4页
  • 作者单位

    Wood Laboratory EMPA-Swiss Federal Laboratories for Materials Testing and Research;

    Wood Laboratory EMPA-Swiss Federal Laboratories for Materials Testing and Research;

    Department of Zoology Institute of Biology Freie Universität Berlin;

    Chair of Building Physics ETH-Swiss Federal Institute of Technology;

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  • 入库时间 2022-08-18 00:13:20

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