Wang D C, Liu J Y, Huang Y, Duan X W, Wang X, Zhang X, Sun Z C, Chen J H, Zhang W
School of Geology and Geomatics Tianjin Chengjian University Tianjin China.
Institute of International Rivers and Eco-Security Yunnan University Kunming China.
Geohealth. 2020 May 1;4(5):e2019GH000242. doi: 10.1029/2019GH000242. eCollection 2020 May.
To quantitatively determine the effect of Xiluodu Reservoir on the temperature of the surrounding mountains, the temperature differences between various locations and the reservoir were calculated based on Landsat 8 thermal infrared sensor (TIRS) data. Elevation, slope, aspect, normalized difference vegetation index (NDVI), and visual field were selected as the impact factors, and the most significant grid size used to explore the effect of reservoir on the surrounding mountains was determined by spatial analysis and partial correlation analysis. The effect of the Xiluodu Reservoir on the surrounding mountains' temperature was then quantitatively studied while accounting for the effect of water surface width on temperature. The results are summarized as follows. The most significant grid size for determining the influence of Xiluodu Reservoir on the surrounding mountains' temperature is 90 m. The effect range threshold of the entire reservoir on the temperature of the surrounding mountains is approximately 600 m, and the partial correlation coefficient in each buffer area decreases gradually with increasing distance from the reservoir. The effect threshold of the reservoir on the temperature of the surrounding mountains is approximately 1,500 m in the head area with a water surface width approximately 1,000 m, but it is negligible in the tributary area where the width is approximately 60 m.
为定量确定溪洛渡水库对周边山区气温的影响,基于Landsat 8热红外传感器(TIRS)数据计算了各地与水库之间的温差。选取海拔、坡度、坡向、归一化植被指数(NDVI)和视野作为影响因子,并通过空间分析和偏相关分析确定用于探究水库对周边山区影响的最显著网格大小。在考虑水面宽度对气温影响的同时,定量研究了溪洛渡水库对周边山区气温的影响。结果总结如下。确定溪洛渡水库对周边山区气温影响的最显著网格大小为90米。整个水库对周边山区气温的影响范围阈值约为600米,各缓冲区的偏相关系数随距水库距离的增加而逐渐减小。在水面宽度约1000米的库区,水库对周边山区气温的影响阈值约为1500米,但在宽度约60米的支流区域其影响可忽略不计。