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Resource Communication. Temporal optimization of fuel treatment design in blue gum (Eucalyptus globulus) plantations

机译:资源交流。蓝桉(Eucalyptus globulus)人工林燃料处理设计的时间优化

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Aim of study: This study was conducted to support fire and forest management planning in eucalypt plantations based on economic, ecological and fire prevention criteria, with a focus on strategic prioritisation of fuel treatments over time. The central objective was to strategically locate fuel treatments to minimise losses from wildfire while meeting budget constraints and demands for wood supply for the pulp industry and conserving carbon. Area of study: The study area was located in Serra do Socorro (Torres Vedras, Portugal, covering ~1449 ha) of predominantly Eucalyptus globulus Labill forests managed cultivated for pulpwood by The Navigator Company. Material and methods: At each of four temporal stages (2015-2018-2021-2024) we simulated: (1) surface and canopy fuels, timber volume (m 3 ha -1 ) and carbon storage (Mg ha -1 ); (2) fire behaviour characteristics, i.e. rate of spread (m min -1 ), and flame length (m), with FlamMap fire modelling software; (3) optimal treatment locations as determined by the Landscape Treatment Designer (LTD). Main results: The higher pressure of fire behaviour in the earlier stages of the study period triggered most of the spatial fuel treatments within eucalypt plantations in a juvenile stage. At later stages fuel treatments also included shrublands areas. The results were consistent with observations and simulation results that show high fire hazard in juvenile eucalypt stands. Research highlights: Forest management planning in commercial eucalypt plantations can potentially accomplish multiple objectives such as augmenting profits and sustaining ecological assets while reducing wildfire risk at landscape scale. However, limitations of simulation models including FlamMap and LTD are important to recognise in studies of long term wildfire management strategies. Keywords : Eucalypt plantations; Fire hazard; FlamMap; fuel treatment optimisation; Landscape Treatment Designer; wildfire risk management.
机译:研究目的:这项研究旨在根据经济,生态和防火标准为桉树人工林的火灾和森林管理规划提供支持,重点是随着时间的推移优先处理燃料。中心目标是在战略上确定燃料处理的位置,以最大程度地减少野火造成的损失,同时满足预算限制以及对纸浆业木材供应和节约碳的需求。研究区域:研究区域位于Serra do Socorro(葡萄牙托雷斯韦德拉斯,占地约1449公顷),主要由Navigator Company管理,以纸浆木为原料种植的桉树Labill森林。材料和方法:在四个时间阶段(2015-2018-2021-2024)的每个阶段,我们模拟:(1)地面燃料和冠层燃料,木材量(m 3 ha -1)和碳储量(Mg ha -1); (2)使用FlamMap火灾建模软件,具有火灾行为特征,即扩散速率(m min -1)和火焰长度(m); (3)由景观处理设计师(LTD)确定的最佳处理位置。主要结果:在研究阶段的早期,较高的火灾行为压力触发了幼年期桉树人工林内的大多数空间燃料处理。在后期阶段,燃料处理还包括灌木丛地区。结果与观察结果和模拟结果一致,这些结果表明,幼年桉树林有很高的火灾隐患。研究重点:商业桉树人工林的森林管理规划可以潜在地实现多个目标,例如增加利润和维持生态资产,同时减少景观尺度上的野火风险。然而,包括FlamMap和LTD在内的仿真模型的局限性对于长期野火管理策略的研究很重要。关键字:桉树人工林;火灾隐患; FlamMap;优化燃料处理;景观处理设计师;野火风险管理。

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