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埃塞俄比亚阿巴伊河流域归一化植被指数(NDVI)的时空趋势及其对气候变化的响应

Spatiotemporal trends of NDVI and its response to climate variability in the Abbay River Basin, Ethiopia.

作者信息

Hussien Kassaye, Kebede Asfaw, Mekuriaw Asnake, Beza Solomon Asfaw, Erena Sitotaw Haile

机构信息

Department of Geographic Information Science, Haramaya University, Dire Dawa, Ethiopia.

School of Water Resources and Environmental Engineering, Haramaya University, Dire Dawa, Ethiopia.

出版信息

Heliyon. 2023 Feb 28;9(3):e14113. doi: 10.1016/j.heliyon.2023.e14113. eCollection 2023 Mar.

Abstract

Woody vegetation plays a vital role in regulating the water budget and energy exchange in the Earth's system. This study aimed at analyzing the spatiotemporal variability of Normalized Difference Vegetation Index (NDVI) and its response to Potential Evapotranspiration (PET), rainfall (RF), soil moisture (SM), and temperature (TEM) in the study area. The trends, correlations, and relationships between NDVI and climate variables were executed using Mann-Kendall monotonic trend (MKMT), partial correlation coefficients (PCC), and multiple linear regression (MLR) methods, respectively. Over the last 26 years, the interannual NDVI increased by 0.0065 yr (R = 0.159, p = 0.157). The spatiotemporal MKMT and Theil-Sen slope analysis showed that interannual NDVI increased significantly in 78% of the basin's total area. Of the 78% of the basin, 31%, and 47%, of the total area showed extremely significant increasing (Z = 4.706, p ≤ 0.01), and significant increasing trends (Z = 2.378, p ≤ 0.05) respectively. The interannual variation of NDVI was well explained (R = 0.88, Adjusted R = 0.84) by the climate variables in the eastern, southeastern, and central sub-basins where agriculture, grass, sparse vegetation and barelands are the predominant land use land cover (LULC) classes. The main climatic factors that control vegetation growth and greenness during the rainy season were found to be PET, SM, and RF with 0.91, 0.99, and 0.86 PCC with NDVI respectively. The current study broadens the scientific community's understanding of the relationship between climate variables and vegetation growth in highland ecosystems. Understanding the seasonal and long-term relationship between climate and NDVI contributes to the scientific knowledge of highland ecosystems, which are extremely vulnerable to climate change.

摘要

木本植被在调节地球系统的水分平衡和能量交换方面发挥着至关重要的作用。本研究旨在分析归一化植被指数(NDVI)的时空变异性及其对研究区域潜在蒸散(PET)、降雨量(RF)、土壤湿度(SM)和温度(TEM)的响应。分别使用曼-肯德尔单调趋势(MKMT)、偏相关系数(PCC)和多元线性回归(MLR)方法来分析NDVI与气候变量之间的趋势、相关性和关系。在过去26年中,年际NDVI以0.0065 yr的速率增加(R = 0.159,p = 0.157)。时空MKMT和泰尔-森斜率分析表明,流域总面积的78%年际NDVI显著增加。在流域的78%中,总面积的31%和47%分别呈现出极显著增加趋势(Z = 4.706,p≤0.01)和显著增加趋势(Z = 2.378,p≤0.05)。在东部、东南部和中部子流域,农业、草地、稀疏植被和裸地是主要的土地利用土地覆盖(LULC)类型,气候变量能够很好地解释NDVI的年际变化(R = 0.88,调整后R = 0.84)。研究发现,雨季控制植被生长和绿度的主要气候因素是PET、SM和RF,它们与NDVI的PCC分别为0.91、0.99和0.86。本研究拓宽了科学界对高地生态系统中气候变量与植被生长关系的理解。了解气候与NDVI之间的季节和长期关系有助于增进对高地生态系统的科学认识,高地生态系统极易受到气候变化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bef/10006846/869c291aec8d/ga1.jpg

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