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基于地理技术的建模以优化城市地区森林网络的保护

Geotechnology-Based Modeling to Optimize Conservation of Forest Network in Urban Area.

作者信息

Teng Mingjun, Zhou Zhixiang, Wang Pengcheng, Xiao Wenfa, Wu Changguang, Lord Elizabeth

机构信息

College of Horticultural & Forestry Sciences/Key Laboratory of Horticultural Plant Biology, Ministry of Education, Huazhong Agricultural University, Wuhan, 430070, China.

Research Institute of Forest Ecology, Environment and Protection/Key Laboratory of Forest Ecology and Environment of the State Forestry Administration, Chinese Academy of Forestry Sciences, Beijing, 100091, China.

出版信息

Environ Manage. 2016 Mar;57(3):601-19. doi: 10.1007/s00267-015-0642-6. Epub 2015 Dec 12.

Abstract

Forest network development in urban areas faces the challenge from forest fragmentation, human-induced disturbances, and scarce land resources. Here, we proposed a geotechnology-based modeling to optimize conservation of forest network by a case study of Wuhan, China. The potential forest network and their priorities were assessed using an improved least-cost path model and potential utilization efficiency estimation. The modeling process consists of four steps: (i) developing species assemblages, (ii) identifying core forest patches, (iii) identifying potential linkages among core forest patches, and (iv) demarcating forest networks. As a result, three species assemblages, including mammals, pheasants, and other birds, were identified as the conservation targets of urban forest network (UFN) in Wuhan, China. Based on the geotechnology-based model, a forest network proposal was proposed to fulfill the connectivity requirements of selected species assemblages. The proposal consists of seven forest networks at three levels of connectivity, named ideal networks, backbone networks, and comprehensive network. The action priorities of UFN plans were suggested to optimize forest network in the study area. Additionally, a total of 45 forest patches with important conservation significance were identified as prioritized stepping-stone patches in the forest network development. Urban forest conserve was also suggested for preserving woodlands with priority conservation significance. The presented geotechnology-based modeling is fit for planning and optimizing UFNs, because of the inclusion of the stepping-stone effects, human-induced pressures, and priorities. The framework can also be applied to other areas after a sensitivity test of the model and the modification of the parameters to fit the local environment.

摘要

城市地区的森林网络发展面临着森林碎片化、人为干扰和土地资源稀缺等挑战。在此,我们以中国武汉为例,提出了一种基于地理技术的模型,以优化森林网络的保护。利用改进的成本最低路径模型和潜在利用效率估计,对潜在的森林网络及其优先级进行了评估。建模过程包括四个步骤:(i)确定物种组合;(ii)识别核心森林斑块;(iii)确定核心森林斑块之间的潜在联系;(iv)划定森林网络。结果,确定了包括哺乳动物、雉鸡和其他鸟类在内的三种物种组合,作为中国武汉城市森林网络(UFN)的保护目标。基于该地理技术模型,提出了一项森林网络方案,以满足选定物种组合的连通性要求。该方案由七个森林网络组成,分为理想网络、骨干网络和综合网络三个连通性级别。建议了UFN计划的行动优先级,以优化研究区域的森林网络。此外,共确定了45个具有重要保护意义的森林斑块,作为森林网络发展中的优先踏脚石斑块。还建议对城市森林进行保护,以优先保护具有重要保护意义的林地。所提出的基于地理技术的建模适用于UFN的规划和优化,因为它考虑了踏脚石效应、人为压力和优先级。经过模型敏感性测试和参数修改以适应当地环境后,该框架也可应用于其他地区。

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