城市林分林下温度和湿度受林冠边缘距离和树干接近程度的影响

IF 2.7 Q1 FORESTRY
Ignacio C. Fernández , Joaquín Merino , Thomas Koplow-Villavicencio
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引用次数: 0

摘要

气候变化增加了城市地区的极端温度,降低了环境质量,并威胁到脆弱人群的健康。植树已经成为调节城市温度的关键策略,特别是在炎热天气中减少极端高温。树木提供遮荫和增加水分,降低冠层以下的温度。这种降温效果可以通过成组种树来增强。然而,关于林内树木的空间排列如何影响城市地区冠下小气候条件的信息很少。在本研究中,我们评估了城市林分中树木的空间布局对冠层下温度和相对湿度的影响,特别是测试了到冠层边缘和树干的距离对这些小气候变量的影响。我们通过收集位于智利圣地亚哥城市公园的五个平均年龄的树木的经验数据来评估这些关系。采用一个由25个传感器组成的10 × 10 m网格来测量冠层下的气候变量,并记录每个传感器到冠层边缘和最近树干的距离。在温暖、晴朗的日子里,每个展台在三个不同的日子里收集数据,并应用线性混合模型来检验关系。我们的研究结果表明,与周围地区相比,所有的林分都降低了冠层下的温度。此外,我们还发现树冠和树干对冠下温度和相对湿度的影响与距离有关,其中距离对冠层温度和相对湿度的影响相对较大。然而,这些结果在林分之间差异很大,有些林分没有影响。增加我们对树木空间布局如何影响其冷却能力的理解,对于规划城市植被以缓解城市地区气温上升至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distance to canopy edge and tree trunk proximity affect understory temperature and humidity in urban tree stands
Climate change is increasing extreme temperatures in urban areas, degrading environmental quality and threatening the health of vulnerable human populations. Planting trees has become a key strategy for regulating urban temperatures, particularly for reducing heat extremes during hot weather. Trees provide shade and increase moisture, lowering below-canopy temperatures. This cooling effect could be enhanced by planting trees in groups. However, information on how the spatial arrangement of trees within tree stands influences below-canopy microclimatic conditions in urban areas is scarce. In this study, we evaluate how below-canopy temperature and relative humidity are affected by the spatial arrangement of trees within urban tree stands, specifically testing the impact of distances to the canopy edge and tree trunks on these microclimatic variables. We assessed these relationships by collecting empirical data from five even-aged tree stands, located in an urban park in Santiago, Chile. A 10 × 10 m grid of 25 sensors was used to measure below-canopy climatic variables, and the distance from each sensor to the edge of the canopy and to the closest tree trunks was recorded. Data was collected on three different days for each stand on warm, sunny days, and linear mixed models were applied to test the relationships. Our results show that all tree stands reduce below-canopy temperatures compared to surrounding areas. Additionally, we identified distance-dependent effects of tree canopy and trunks on below-canopy temperatures and relative humidity, with a relatively larger effect of distance to the canopy cover. However, these results varied significantly between stands, with some stands showing no effects. Increasing our understanding of how the spatial arrangement of trees influences their cooling capacity is crucial for planning urban vegetation to mitigate rising temperatures in urban areas.
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来源期刊
Trees, Forests and People
Trees, Forests and People Economics, Econometrics and Finance-Economics, Econometrics and Finance (miscellaneous)
CiteScore
4.30
自引率
7.40%
发文量
172
审稿时长
56 days
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