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首页> 外文期刊>Open Journal of Forestry >Sub-Canopy Temperature Dynamics of a Native Tree Plantation from a Lowland Tropical Rainforest in Costa Rica
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Sub-Canopy Temperature Dynamics of a Native Tree Plantation from a Lowland Tropical Rainforest in Costa Rica

机译:哥斯达黎加低地热带雨林原生林的亚盖温度动态

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With urbanization encroaching upon forestlands, characterizing microclimates in secondary forests will be important for the sustainable management of microclimates in agroforestry systems. We used micro-sensors to characterize changes in temperature at different heights in the sub-canopy of both secondary forest and 15-year-old agroforestry plots. Results show that while agroforestry plots had different temperature profiles from the secondary forest, the monoculture plot (consisting of Pentaclethra macroloba) had temperatures similar to the profile found in the secondary forest. This suggests that the replication of temperature profiles in a secondary forest may be independent of the number of tree species in a plot (e.g. polyculture), but may instead depend on the density of a given trees species. These findings further suggest that characterizing temperature microclimates in secondary forests can serve to improve the ecological sustainability of agro-forestry systems.
机译:随着城市化进程侵占林地,表征次生林中的小气候对于农林业系统中小气候的可持续管理将非常重要。我们使用微传感器来表征次生林和15年历史的农林业用地的次冠层不同高度的温度变化。结果表明,虽然农林地块的温度与次生林的温度不同,但单一种植区(由五倍体组成)的温度与次生林的温度相似。这表明在次生林中温度曲线的复制可能与地块中树木种类的数量无关(例如混养),但可能取决于给定树木种类的密度。这些发现进一步表明,表征次生林中的温度微气候可以有助于改善农林业系统的生态可持续性。

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