Comparing assumptions and applications of dynamic vegetation models used in the Arctic-Boreal Zone of Alaska and Canada.

Elise Heffernan, Howard E. Epstein, T. D. McQuinn, David Lutz, Brendan M Rogers, Anna‐Maria Virkkala, Amanda H Armstrong
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Abstract

Modeling Arctic-Boreal vegetation is a challenging but important task, since this highly dynamic ecosystem is undergoing rapid and substantial environmental change. In this work, we synthesized information on 18 dynamic vegetation models that can be used to project vegetation structure, composition, and function in North American Arctic-Boreal ecosystems. We reviewed the ecosystem properties and scaling assumptions these models make, reviewed their applications from the scholarly literature, and conducted a survey of expert opinion to determine which processes are important but lacking in dynamic vegetation models. We then grouped the models into four categories (specific intention models, forest species models, cohort models, and carbon tracking models) using cluster analysis to highlight similarities among the models. Our application review identified 48 papers that addressed vegetation dynamics either directly (22) or indirectly (26). The expert survey results indicated a large desire for increased representation of active layer depth and permafrost in future model development. Ultimately, this paper serves as a summary of dynamic vegetation model development and application in Arctic-Boreal environments and can be used as a guide for potential model users, thereby prioritizing options for model development.
比较阿拉斯加和加拿大北极-北方地区使用的动态植被模型的假设和应用。
北极-北方植被建模是一项具有挑战性的重要任务,因为这个高度动态的生态系统正在经历快速而巨大的环境变化。在这项工作中,我们综合了 18 个动态植被模型的信息,这些模型可用于预测北美北极-北方生态系统的植被结构、组成和功能。我们回顾了这些模型的生态系统属性和比例假设,查阅了学术文献中的应用,并对专家意见进行了调查,以确定哪些过程是重要的,但在动态植被模型中却缺乏。然后,我们利用聚类分析将模型分为四类(特定意向模型、森林物种模型、群落模型和碳追踪模型),以突出模型之间的相似性。我们的应用综述确定了 48 篇直接(22 篇)或间接(26 篇)涉及植被动态的论文。专家调查结果表明,在未来的模型开发中,人们非常希望增加对活动层深度和永久冻土的表述。最终,本文可作为北极-北方环境中动态植被模型开发和应用的总结,并可作为潜在模型用户的指南,从而确定模型开发的优先选项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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