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The ecological services of plant communities in parks for climate control and recreation—A case study in Shanghai China

机译:公园植物群落的气候服务与休闲生态服务-以上海为例

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摘要

Mitigating extreme heat in urban areas is beneficial and sometimes critical to human health. Thriving plant communities in community parks play an important role in mitigating extreme heat through providing cooling effect, while inevitably affecting how people perceive the benefits of using community parks for recreation. Thus, the impacts of plant communities on the thermal environment should be quantified to determine the optimal structure of the plant community. The goal would be to harmonize the functions of improving the thermal environment with the preferences people have related to the recreational benefits of plant communities with various levels of vegetation density. In this paper, the correlations between the structural characteristics of plant communities and their function in mitigating the thermal environment were investigated on calm summer days in Xincheng Central Park, Minhang District, Shanghai, China. In addition to analyzing the plant communities present and their effects on the park microclimate, a questionnaire was employed to determine the plant community preferences of recreational park users. The results showed that plant communities could reduce the air temperature by 1.23–2.42 °C and increase the relative humidity by 2.4–4.2% during the daytime. The microclimate conditions in plant communities with varying vegetation densities were significantly different. The canopy density and leaf area index primarily controlled the temperature reduction, while the canopy density and total canopy cover ratio primarily controlled the increase in humidity; meanwhile, these correlations varied at different times of the day. Moreover, most of the park users preferred a moderately dense plant community which met their environmental perceptions for recreation in parks. Age or education level variables of park users would also predict preferences for different plant community densities. Ultimately, one plant community pattern with appropriate canopy density (60%), leaf area index (≥3) and canopy cover ratio (total 0.80–1.20, with 0.6–0.75 for trees and 0.20–0.45 for shrubs/woodland area) was recommended, which would harmonize the functions of the mitigation of the thermal environment with most people’s perception of a desirable vegetation density.
机译:减轻城市地区的高温对人类健康是有益的,有时甚至是至关重要的。社区公园中兴旺的植物群落通过提供冷却效果在缓解极端热量方面发挥着重要作用,同时不可避免地影响着人们对使用社区公园进行娱乐的看法。因此,应量化植物群落对热环境的影响,以确定植物群落的最佳结构。目的是使改善热环境的功能与人们对具有不同植被密度水平的植物群落的娱乐利益相关的偏爱相协调。本文在上海市闵行区新城中央公园,在平静的夏季研究了植物群落结构特征与其缓解热环境功能之间的相关性。除了分析当前存在的植物群落及其对公园小气候的影响外,还使用问卷调查表确定了休闲公园使用者的植物群落偏好。结果表明,白天植物群落可以使气温降低1.23–2.42°C,相对湿度提高2.4–4.2%。不同植被密度的植物群落中的小气候条件存在显着差异。冠层密度和叶面积指数主要控制降温,而冠层密度和总冠层覆盖率主要控制湿度的增加。同时,这些相关性在一天中的不同时间发生变化。此外,大多数公园使用者更喜欢中等密度的植物群落,这些群落符合他们在公园休闲中的环境感知。公园使用者的年龄或受教育程度变量还将预测对不同植物群落密度的偏好。最终,建议使用一种具有适当冠层密度(60%),叶面积指数(≥3)和冠层覆盖率(总计0.80–1.20,其中树木为0.6–0.75,灌木/林地为0.20–0.45)的植物群落模式。 ,这将缓解热环境的功能与大多数人对理想植被密度的感知相协调。

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  • 期刊名称 other
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  • 年(卷),期 -1(13),4
  • 年度 -1
  • 页码 e0196445
  • 总页数 18
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:07:29

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