巢穴(蛋白质结构基序)
大气(单位)
示踪剂
大气科学
环境科学
能量交换
风速
地质学
生态学
生物
气象学
物理
海洋学
生物化学
核物理学
摘要
Patterns and rates of air movements in the mounds and nests of Macrotermes michaelseni were studied using tracer methods. Wind is a significant source of energy for powering nest ventilation, despite the mound being a completely enclosed structure. Nests are ventilated by a tidal movement of air driven by temporal variation in wind speed and wind direction. Density gradients sufficiently steep to drive bulk flow by natural convection will be rare. However, metabolism‐induced buoyant forces may interact with wind energy in a way that promotes homeostasis of the mound atmosphere.
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