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Coupling Biology and Oceanography in Models

机译:模型中生物学与海洋学的耦合

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The dynamics of marine ecosystems, i.e. the changes of observable chemical-biological quantities in space and time, are driven by biological and physical processes. Predictions of future developments of marine systems need a theoretical framework, i.e. models, solidly based on research and understanding of the different processes involved. The natural way to describe marine systems theoretically seems to be the embedding of chemical-biological models into circulation models. However, while circulation models are relatively advanced the quantitative theoretical description of chemical-biological processes lags behind. This paper discusses some of the approaches and problems in the development of consistent theories and indicates the beneficial potential of the coupling of marine biology and oceanography in models.
机译:海洋生态系统的动态,即在空间和时间上可观察到的化学生物量的变化,是由生物和物理过程驱动的。对海洋系统未来发展的预测需要一个理论框架,即模型,牢固地基于对不同过程的研究和理解。理论上描述海洋系统的自然方法似乎是将化学生物学模型嵌入循环模型中。但是,尽管循环模型相对较先进,但化学-生物过程的定量理论描述却落后。本文讨论了一致理论发展过程中的一些方法和问题,并指出了海洋生物学和海洋学在模型中耦合的有益潜力。

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