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Geophysical Fluid Dynamics: Whence, Whither and Why?

机译:地球物理流体动力学:从何而来,为什么?

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摘要

This article discusses the role of Geophysical Fluid Dynamics (GFD) in understanding the natural environment, and in particular the dynamics of atmospheres and oceans on Earth and elsewhere. GFD, as usually understood, is a branch of the geosciences that deals with fl uid dynamics and that, by tradition, seeks to extract the bare essence of a phenomenon, omitting detail where possible. The geosciences in general deal with complex interacting systems and in some ways resemble condensed matter physics or aspects of biology, where we seek explanations of phenomena at a higher level than simply directly calculating the interactions of all the constituent parts. That is, we try to develop theories or make simple models of the behaviour of the system as a whole. However, these days in many geophysical systems of interest, we can also obtain information for how the system behaves by almost direct numerical simulation from the governing equations. The numerical model itself then explicitly predicts the emergent phenomena – the Gulf Stream for example –\udsomething that is still usually impossible in biology or condensed matter physics. Such simulations, as manifested for example in complicated General Circulation Models, have in some ways been extremely successful and one may reasonably now ask whether understanding a complex geophysical system is necessary for predicting it. In what follows\udwe discuss such issues and the roles that GFD has played in the past and will play in the future.
机译:本文讨论了地球物理流体动力学(GFD)在理解自然环境,尤其是地球和其他地方的大气和海洋动力学方面的作用。正如通常所理解的那样,GFD是地球科学的一个分支,涉及流体动力学,按照传统,GFD试图提取现象的本质,并在可能的地方省略细节。地球科学通常处理复杂的相互作用系统,并且在某些方面类似于凝聚态物理或生物学方面,在这里我们寻求更高层次的现象解释,而不是直接计算所有组成部分的相互作用。也就是说,我们尝试开发理论或对整个系统的行为进行简单的建模。但是,如今,在许多感兴趣的地球物理系统中,我们还可以通过从控制方程进行的直接数值模拟获得有关系统运行方式的信息。然后,数值模型本身可以明确地预测出现的现象,例如墨西哥湾流。\ udsome在生物学或凝聚态物理中通常仍然是不可能的。这样的模拟,例如在复杂的总循环模型中表现出来的,在某些方面已经非常成功,现在人们可以合理地问,了解复杂的地球物理系统对于预测它是否必要。在下文中,我们将讨论此类问题以及GFD过去和将来将扮演的角色。

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    Vallis, G;

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  • 年度 2016
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  • 正文语种 en
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