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Effect of Gap Size on the Dynamic of Micro Environments during the Daytime at Castanopsis kawakamii Natural Reserve Forest, Sanming City, China

机译:三明市格氏Cast自然保护区林间隙大小对白天微环境动态的影响

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The temporal dynamics of micro-environments within gap size affect the species regeneration. This study aimed to determine the effects of gap size on the variation of micro-environments during the daytime. Nine sampling gaps at Castanopsis kawakamii Natural Reserve Forest, Sanming City, China were divided into three sizes (small, medium and large). The micro-environments viz. soil temperature at 0, 5 and 10 cm depth, air temperature, light intensity, and air relative humidity were recorded for the entire gap area in every 2 h interval from 8 am to 6 pm. The results showed time-dependent variations for these variables. In each gap size, the maximum light intensity was recorded from 10 am to 2 pm at the center of the gap, which was higher at the north and west directions than south and east directions, except for the north direction in large gap size. Light intensity has a significant positive correlation with soil temperature compared with that under canopy. Soil temperature responds differently according to the size of the gap that increased with time from morning to afternoon in large gap size with the highest during 12 to 2 pm which is different from small and medium gap sizes. Air temperature has a significant negative correlation with air relative humidity, both in gap sizes and under canopy. It could be concluded that gap size has a significant impact on the micro-environments and the variables in five directions were varied depending on the light intensity.
机译:间隙大小内的微环境的时间动态影响物种的再生。这项研究旨在确定间隙大小对白天微环境变化的影响。在中国三明市的锥栗川上自然保护区森林中,有九个采样间隙被分为三个大小(小,中,大)。微观环境,即。在上午8点至下午6点之间每2小时间隔记录整个间隙区域的0、5和10 cm深度的土壤温度,空气温度,光强度和空气相对湿度。结果显示这些变量随时间的变化。在每个间隙尺寸中,在间隙中心从上午10点到下午2点记录的最大光强度,除了较大间隙尺寸的北向,在北和西方向比南和东方向要高。与冠层下相比,光强与土壤温度呈显着正相关。在大间隙中,土壤温度根据间隙的大小而有所不同,间隙的大小随早晨到下午的时间增加而增加,在12到2 pm时最高,这与中小型间隙不同。在间隙大小和冠层下,空气温度与空气相对湿度具有显着的负相关。可以得出结论,间隙尺寸对微环境有重大影响,并且五个方向上的变量根据光强度而变化。

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