Lin Ying, Huang Shanjun, Xu Han, Fang Wenqiang, Gao Chenfei, Huang Jingkai, Fu Weicong
College of Landscape Architecture, Fujian Agriculture and Forestry University, 15 Shangxiadian Road, Fuzhou, 350002, China.
Engineering Research Center for Forest Park of National Forestry and Grassland Administration, Fuzhou, 350002, China.
Environ Sci Pollut Res Int. 2025 Feb;32(6):3130-3146. doi: 10.1007/s11356-024-32009-6. Epub 2024 Jan 27.
The treetop walk is an innovative urban greenway that harmoniously integrates with the natural topography, meandering through the tree canopy. It serves as a vital element in elevating the urban mountain landscape while also significantly impacting the recreational experiences of the public through its microclimate effects. Moreover, the distinctive plant community characteristics of the treetop walk significantly enhance the microclimate. Examining the plant community attributes that potentially influence the microclimate conditions of the treetop walk is of utmost importance. We chose the Fu Forest Trail in Fuzhou as the sample site for this research. By implementing an orthogonal experimental design and using ENVI-met software, we simulated data to explore the impacts of various plant community characteristics on the microclimate of the treetop walk in autumn. The findings revealed the following results: (1) The presence of tree height, leaf area index, crown type, and planting density significantly influenced the microclimate of the treetop walk green spaces, with some factors having primary effects while others having secondary effects. (2) No significant variations were observed in the microclimate effects of diverse plant community characteristics in the treetop walk during morning, noon, and evening hours. (3) Scheme 13 emerged as the optimal choice for cooling and humidifying ventilating, characterized by a tree height of 20 m, leaf area index of 4.4, spherical crown shape, and planting spacing of 2 m. The tree species available in the Fuzhou area include Ligustrum quihoui Carr., Buxus sinica, Laurus nobilis, Myrica rubra, and Osmanthus fragrans. (4) Compared to traditional understory trails, tree height and planting spacing notably influence the microclimate environment of the treetop walk.
树冠漫步道是一种创新型城市绿道,与自然地形和谐融合,蜿蜒穿梭于树冠层。它是提升城市山地景观的重要元素,同时通过其微气候效应显著影响公众的休闲体验。此外,树冠漫步道独特的植物群落特征显著改善了微气候。研究潜在影响树冠漫步道微气候条件的植物群落属性至关重要。我们选择福州的福林步道作为本研究的样本地点。通过实施正交试验设计并使用ENVI-met软件,我们模拟数据以探究各种植物群落特征对秋季树冠漫步道微气候的影响。研究结果如下:(1)树高、叶面积指数、树冠类型和种植密度显著影响树冠漫步道绿地的微气候,一些因素起主要作用,而另一些因素起次要作用。(2)树冠漫步道不同植物群落特征在早晨、中午和晚上的微气候效应无显著差异。(3)方案13是降温增湿通风的最佳选择,其特征为树高20米、叶面积指数4.4、球形树冠形状和种植间距2米。福州地区可用的树种包括小叶女贞、中华蚊母、月桂、杨梅和桂花。(4)与传统林下步道相比,树高和种植间距对树冠漫步道的微气候环境影响显著。