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The effect of canopy gaps on subcanopy ventilation and scalar fluxes in a tropical forest.

机译:林冠间隙对热带森林中亚冠层通风和标量通量的影响。

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Forest gaps may provide conduits that preferentially vent moist, CO2-rich subcanopy air to the atmosphere. We measured the above-canopy fluxes of momentum, sensible heat (H), CO2, and water vapor (Et), and the vertical profiles of CO2 and water vapor, from two 67-m meteorological towers in a selectively logged Brazilian rainforest. The logging removed ~3.5 trees ha-1, and increased the incidence of gaps by a factor of 3 over nearby undisturbed forest. One tower was located in an intact patch of forest within the selectively logged area; the other was 400 m upwind in a large gap created by the logging. During daytime the subcanopy air in the intact patch of forest had more CO2, more water vapor, and was cooler than the air at comparable altitudes in the gap. Meanwhile, the daytime CO2 flux was less negative (reduced CO2 uptake) above the gap than above the intact forest, the daytime Etwas greater above the gap than the intact forest, and the daytime H was lower above the gap than the intact forest. These patterns cannot be explained fully by the local loss of canopy gas exchange in the gap, but are consistent with the horizontal transport into the gap, and subsequent vertical transport out of the gap, of high-CO2, humid, cool air from the forest understory. The understory was drier and warmer during daytime after the logging, which would be expected to increase flammability. Further measurement and modeling efforts are needed to better understand the effect of canopy gaps on the local CO2 and energy exchange, as well as the flux footprint..
机译:森林间隙可能会提供导管,这些导管优先将潮湿的富含CO2的亚冠层空气排放到大气中。我们在有选择地采伐的巴西雨林中,从两个67米高的气象塔中测量了上述冠层通量,显热(H),CO2和水蒸气(Et)以及CO2和水蒸气的垂直剖面。砍伐砍伐了约3.5棵ha-1树木,并使附近未受干扰的森林的空缺发生率增加了3倍。一栋塔楼位于选择性采伐区域内完整的森林中。另一个是在测井造成的大间隙上风向400 m处。在白天,完整林区的亚冠层空气中的二氧化碳含量更高,水蒸气更多,并且比间隙中处于相同高度的空气要凉爽。同时,白天CO2通量高于林间空隙的负值(减少的CO2吸收)要比完整林之上的少,白天Etwas大于林间空隙的幅度要大于完整森林,而白天H低于林间空径要比完整林低。这些模式不能完全通过间隙中冠层气体交换的局部损失来解释,但与水平间隙向间隙中的水平传输以及随后的间隙中垂直排放的高CO2,潮湿,凉爽的森林空气相一致。下层。伐木后白天的林下较干燥较暖,这有望增加可燃性。需要进行进一步的测量和建模工作,以更好地了解冠层间隙对局部CO2和能量交换以及通量足迹的影响。

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