遥感应用于管理整个黄金海岸保护区城市的大规模恢复动态项目

Science Talks Pub Date : 2025-03-01 Epub Date: 2025-01-31 DOI:10.1016/j.sctalk.2025.100429
Jean-Marc Hero , Luke Shoo , Michael Duncan , Darren Roche , Jesse Kenny , Howard Taylor , Tim Robson , Sanjeev Kumar Srivastava , Josh Veitch-Michaelis
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摘要

黄金海岸市制定了一项计划,利用人工(CNR)、辅助(ANR)和非辅助自然再生(UNR),在整个保护区(约13789公顷)恢复原生森林。每年,香港都会进行超过4000公顷的修复工程。该计划由环境决策支持工具(oRestore)支持,用于在空间和时间上智能分配恢复资金(详见b[1])。我们介绍了恢复动态项目,这是一项基于证据的定量评估,对2005年至2022年期间开展的恢复行动的成功进行评估。基于17个恢复工作区域(历史上以外来草为主的牧场和开阔的桉树林植被(预清除区域生态系统12.11.3),我们将光学和激光雷达植被指标与野外生物条件评估进行了比较。UNR被杂草物种的存在所抑制,这些杂草在清除区域占主导地位,导致低生物条件。在没有帮助的情况下,杂草可以持续数十年,并且需要干预(ANR)来恢复原生植被。植树造林提供了林冠覆盖,但在灌木层缺乏物种多样性。辅助NR(控制入侵物种)是开阔桉树林生物多样性最大化的最佳选择。激光雷达分析可以替代BioCondition,但需要实地调查来确定非本地植物覆盖。
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Remote sensing applications for managing a large-scale restoration dynamics project throughout the City of Gold Coast conservation estate
The City of Gold Coast established a program to restore native forests throughout the conservation estate (∼13,789 ha) utilizing constructed (CNR), assisted (ANR), and unassisted natural regeneration (UNR). Each year the city maintains over 4000 Ha of restoration works. The program is supported by an environmental decision support tool (oRestore) for the smart allocation of restoration funds over space and time (see [1] for details). We introduce the Restoration Dynamics Project, a quantitative evidence-based evaluation of the success of restoration actions undertaken between 2005 and 2022. Based on 17 restoration work areas (historically pasture dominated by exotic grasses, and open eucalypt forest vegetation (preclearing Regional Ecosystem 12.11.3), we compared optical and LiDAR vegetation metrics with field BioCondition assessments. UNR is suppressed by the presence of weed species that dominate cleared areas, resulting in low BioCondition. Unassisted, weeds can persist for decades, and intervention (ANR) is required for the recovery of native vegetation. CNR (tree-planting) provides canopy cover, however, lacks species diversity in the shrub layer. Assisted NR (controlling invasive species) is optimal for maximizing biodiversity in open eucalypt forests. LiDAR analytics can be a surrogate for BioCondition however field surveys are needed to determine non-native plant cover.
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