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首页> 外文期刊>Frontiers in Marine Science >Advancing Marine Biogeochemical and Ecosystem Reanalyses and Forecasts as Tools for Monitoring and Managing Ecosystem Health
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Advancing Marine Biogeochemical and Ecosystem Reanalyses and Forecasts as Tools for Monitoring and Managing Ecosystem Health

机译:推进海洋生物地球化学和生态系统再分析和预报作为监测和管理生态系统健康的工具

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Ocean ecosystems are subject to a multitude of stressors including changes in ocean physics and biogeochemistry, and direct anthropogenic influences. Implementation of protective and adaptive measures for ocean ecosystems requires a combination of ocean observations with analysis and prediction tools. These can guide assessments of the current state, elucidate ongoing trends and shifts, and anticipate impacts of climate change and management policies. Analysis and prediction tools are defined here as ocean circulation models that are coupled to biogeochemical or ecological models. The range of potential applications for these systems is broad from reanalyses for assessment of past and current states, and short-term and seasonal forecasts, to scenario simulations including climate change projections. The objectives of this article are to illustrate current capabilities with regard to the three types of applications and to discuss challenges and opportunities. Representative examples of global and regional systems are described with particular emphasis on those in operational or pre-operation use. With regard to benefits and challenges, similar considerations apply to biogeochemical and ecological prediction systems as do to physical systems. However, at present there are at least two major differences: 1) biogeochemical observations streams are much sparser than physical streams presenting a significant hinderance, and 2) biogeochemical and ecological models are largely unconstrained because of insufficient observations. Expansion of biogeochemical and ecological observing systems will allow for significant advances in the development and application of analysis and prediction tools for ocean biogeochemistry and ecosystems with multiple societal benefits.
机译:海洋生态系统受到多种压力的影响,包括海洋物理学和生物地球化学的变化以及直接的人为影响。实施海洋生态系统的保护性和适应性措施需要将海洋观测与分析和预测工具结合起来。这些可以指导对当前状态的评估,阐明当前的趋势和变化,并预测气候变化和管理政策的影响。分析和预测工具在此定义为与生物地球化学或生态模型耦合的海洋环流模型。这些系统的潜在应用范围很广,从对过去和当前状态的评估重新分析,短期和季节性的预测,到包括气候变化预测在内的情景模拟。本文的目的是说明三种类型应用程序的当前功能,并讨论挑战和机遇。描述了全球和区域系统的代表性示例,并特别着重于操作或操作前使用的系统。关于收益和挑战,类似的考虑因素适用于生物地球化学和生态预测系统,也适用于物理系统。但是,目前至少有两个主要区别:1)生物地球化学观测流比物理流稀疏得多,呈现出明显的障碍; 2)由于观测不足,生物地球化学和生态模型在很大程度上不受限制。扩大生物地球化学和生态观测系统将使海洋生物地球化学和具有多种社会效益的分析和预测工具的开发和应用取得重大进展。

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