Li Yingnan, Kang Wanmo, Han Yiwen, Song Youngkeun
Interdisciplinary Program in Landscape Architecture, Seoul National University, Seoul, 08826, Republic of Korea.
Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, 08826, Republic of Korea.
Environ Monit Assess. 2018 Jan 23;190(2):93. doi: 10.1007/s10661-017-6430-4.
Fragmented forests generate a variety of forest edges, leading to microclimates in the edge zones that differ from those in the forest interior. Understanding microclimatic variation is an important consideration for managers because it helps when making decisions about how to restrict the extent of edge effects. Thus, our study attempted to characterize the changing microclimate features at an urban forest edge located on Mt. Gwanak, Seoul, South Korea. We examined edge effects on air temperature, relative humidity, soil temperature, soil moisture, and photosynthetically active radiation (PAR) during the hottest three consecutive days in August 2016. Results showed that each variable responded differently to the edge effects. This urban forest edge had an effect on temporal changes at a diurnal scale in all microclimate variables, except soil moisture. In addition, all variables except relative humidity were significantly influenced by the edge effect up to 15 m inward from the forest boundary. The relative humidity fluctuated the most and showed the deepest extent of the edge effect. Moreover, the edge widths calculated from the relative humidity and air temperature both peaked in the late afternoon (16:00 h). Our findings provide a reference for forest managers in designing urban forest zones and will contribute to the conservation of fragmented forests in urban areas.
破碎化森林会产生多种森林边缘,导致边缘区域的小气候与森林内部不同。了解小气候的变化是管理者的一项重要考量,因为这有助于他们决定如何限制边缘效应的范围。因此,我们的研究试图描述位于韩国首尔冠岳山的一处城市森林边缘不断变化的小气候特征。我们在2016年8月连续最热的三天里,研究了边缘效应对气温、相对湿度、土壤温度、土壤湿度和光合有效辐射(PAR)的影响。结果表明,每个变量对边缘效应的反应各不相同。除土壤湿度外,这个城市森林边缘对所有小气候变量的日变化都有影响。此外,除相对湿度外,所有变量在从森林边界向内15米范围内都受到边缘效应的显著影响。相对湿度波动最大,边缘效应的影响范围也最深。此外,根据相对湿度和气温计算出的边缘宽度在下午晚些时候(16:00)都达到峰值。我们的研究结果为森林管理者设计城市森林区域提供了参考,并将有助于保护城市地区的破碎化森林。