一个灵活的一致的框架,用于建模多个相互影响的环境反应,以管理空间和时间.
Galen Holt1, Ashley Macqueen1, Rebecca E Lester1
1Centre for Regional and Rural Futures, Deakin University, Locked Bag 20000, Geelong, Victoria, 3220, Australia.
Journal of environmental management
|August 6, 2024
概括
一个新的eFlowEval建模框架通过整合多样化的响应和跨空间和时间的扩展来帮助环境管理. 它增强了决策透明度和适应性管理环境灌影响.
科学领域:
- 环境科学环境科学
- 生态系统管理生态系统管理
- 计算生态学计算生态学
背景情况:
- 资源管理往往涉及复杂的,多层次的挑战.
- 评估环境干预措施的成功需要整合不同的生物反应.
- 环境流量管理需要证明各种生态规模的行动的影响.
研究的目的:
- 开发和展示eFlowEval建模框架,以加强环境管理决策.
- 为整合多样化的生态反应提供灵活的系统,并将其跨空间和时间维度扩展.
- 通过捕获知识,比较场景和识别数据差距来支持适应性管理.
主要方法:
- 开发eFlowEval建模框架,具有知识集成,扩展,物种相互作用,场景比较和不确定性分析的能力.
- 使用三个不同的环境反应来展示框架:生态系统代谢,皇家子的息地有利性和竞争的湿地植物动态.
- 框架处理可变尺度 (局部到景观),时间框架 (一周到多年),驾驶员响应模型类型以及空间/时间依赖性的能力的说明.
主要成果:
- eFlowEval框架成功地将多种环境响应类型集成到一个共同的系统中.
- 演示表明,该框架能够评估跨地方到盆地规模以及短到多年的时间框架的影响.
- 该框架容纳了物种间和物种内部的相互作用,可变参数和依赖关系,增强了生态复杂性的表现.
结论:
- eFlowEval框架为大规模的环境管理提供了新的建模能力,扩展了组件响应模型.
- 它提高了环境灌决策的透明度,捕捉了机构知识,并支持适应性管理策略.
- 该框架提供了一个强大的机制,用于评估各种空间和时间尺度的环境灌影响.
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