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Contribution of understory evaporation in a?tropical wet forest during the dry season

机译:在旱季期间林下蒸发的贡献

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Tropical wet forests are complex ecosystems with a?large number of plant species. These environments are characterized by a?high water availability throughout the whole year and a?complex canopy structure. However, how the different sections of the canopy contribute to total evaporation is poorly understood. The aim of this work is to estimate the total evaporation flux and differentiate the contribution among canopy layers of a?tropical wet forest in Costa Rica. The fluxes were monitored during the dry season by making use of the energy balance to quantify the fluxes and stable water isotopes to trace the sources of water vapor. Total evaporation was 275.5 mm and represents 55.9 % of the recorded precipitation (498.8 mm), with 11.7 % of the precipitation being intercepted and evaporated along the forest canopy. The understory beneath 8 m contributed 23.6 % of the evaporation, and almost half of it comes from the first 2 m of the understory. Stable water isotope signatures show different soil water sources depending on the plant type. Palms make use of a?water source with an isotope signature similar to precipitation and throughfall. Soil water with a?fractionated signature is used by trees, bushes and lianas. The isotope signature of water vapor samples overlap among different heights, but it was not possible to make use of the Keeling plot method due to the similar isotope signature of the possible sources of water vapor as well as the high water concentration even on the dryer days.
机译:热带潮湿的森林是复杂的生态系统,具有?大量的植物物种。这些环境的特点是遍历全年的高水可用性和一个复杂的冠层结构。然而,冠层的不同部分是如何促使总蒸发的贡献。这项工作的目的是估计总蒸发助流量,并区分哥斯达黎加的热带潮湿林的冠层层之间的贡献。通过利用能量平衡来定量助量和稳定的水同位素来追踪水蒸气来源,在干燥季节监测助熔剂。总蒸发为275.5毫米,占记录沉淀的55.9%(498.8毫米),沿森林冠层截取并蒸发沉淀的11.7%。 8米下面的林分占蒸发的23.6%,几乎一半来自林下的前2米。稳定的水同位素特征根据植物类型显示不同的土壤水源。棕榈树利用了一个同位素签名的水源,类似于降水和渗透率。树木,灌木丛和藤莲使用土壤水分分级签名。水蒸气样品的同位素特征在不同的高度之间重叠,但由于可能的水蒸气的可能源的同位素签名以及即使在干燥时,也无法利用龙骨图。即使在干燥时也是高水浓度。

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