基于贝叶斯网络的植被生态质量驱动因素分析

Forests Pub Date : 2024-07-19 DOI:10.3390/f15071263
Jin Cai, Xiaojian Wei, Fuqing Zhang, Yuanping Xia
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引用次数: 0

摘要

植被是生态系统的重要组成部分,了解其生态质量的驱动因素和空间优化模式对长江中游城市群的环境管理至关重要。传统的评价采用单一指标,可能无法全面反映植被要素的复杂性,需要通过多种指标进行评价。因此,本研究引入多标准植被生态质量指数(VEQI),结合植被覆盖度和植被生态功能指标,探讨长江中游植被质量的驱动因素,识别植被质量下降或改善的关键区域。通过构建 VEQI 的贝叶斯网络,我们确定了影响该指数的驱动变量。此外,我们还划分了 VEQI 的空间优化区。结果表明,VEQI 呈现出从城市中心的低值向郊区和农村地区的高值过渡的趋势。20 年间,研究区域的平均 VEQI 介于 10.85% 到 94.94% 之间。坡度、DEM 和植被类型被认为是 VEQI 的重要驱动因素,而降水、温度和夜间光照则被认为是次要因素。值得注意的是,湖南、江西和湖北三省,尤其是湖南西部地区被确定为空间优化区域。这项研究不仅加深了人们对长江中游城市群植被生态质量的认识,也为植被的保护和管理提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Driving Factors for Vegetation Ecological Quality Based on Bayesian Network
Vegetation is a crucial component of ecosystems, and understanding the drivers and spatial optimization patterns of its ecological quality is vital for environmental management in the middle reaches of the Yangtze River Urban Agglomeration. Traditional evaluations employing single indices may not fully capture the complexity of vegetation elements and require evaluation through various indicators. Therefore, this study introduced the Multi Criteria Vegetation Ecological Quality Index (VEQI), coupled with vegetation cover and vegetation ecological function indicators, to explore the driving factors of vegetation quality in the middle reaches of the Yangtze River and identify key areas where vegetation quality declines or improves. By constructing a Bayesian network for VEQI, we identified the driving variables that influence the index. Additionally, we delineated spatial optimization zones for VEQI. The results indicate that the VEQI exhibits a trend of transitioning from low values in urban centers to high values in suburban and rural areas. Over 20 years, the average VEQI of the study region ranged from 10.85% to 94.94%. Slope, DEM, and vegetation type were identified as significant drivers of VEQI, while precipitation, temperature, and nighttime light were considered secondary factors. Notably, areas in Hunan, Jiangxi, and Hubei provinces, especially the western part of Hunan, were pinpointed as spatial optimization regions. This research not only enhances the understanding of vegetation’s ecological quality in the urban agglomeration of the middle reaches of the Yangtze River but also provides scientific insights for the protection and management of vegetation.
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