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The role of the oceans in climate

机译:海洋在气候中的作用

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The ocean is increasingly seen as a vital component of the climate system. It exchanges with the atmosphere large quantities of heat, water, gases, particles and momentum. It is an important part of the global redistribution of heat from tropics to polar regions keeping our planet habitable, particularly equatorward of about 30°. In this article we review recent work examining the role of the oceans in climate, focusing on research in the Third Assessment Report of the IPCC and later. We discuss the general nature of oceanic climate variability and the large role played by stochastic variability in the interaction of the atmosphere and ocean. We consider the growing evidence for biogeochemical interaction of climatic significance between ocean and atmosphere. Air-sea exchange of several radiatively important gases, in particular CO_2, is a major mechanism for altering their atmospheric concentrations. Some more reactive gases, such as dimethyl sulphide, can alter cloud formation and hence albedo. Particulates containing iron and originating over land can alter ocean primary productivity and hence feedbacks to other biogeochemical exchanges. We show that not only the tropical Pacific Ocean basin can exhibit coupled ocean-atmosphere interaction, but also the tropical Atlantic and Indian Oceans. Longer lived interactions in the North Pacific and Southern Ocean (the circumpolar wave) are also reviewed. The role of the thermohaline circulation in long-term and abrupt climatic change is examined, with the freshwater budget of the ocean being a key factor for the degree, and longevity, of change. The potential for the Mediterranean outflow to contribute to abrupt change is raised. We end by examining the probability of thermohaline changes in a future of global warming.
机译:海洋越来越被视为气候系统的重要组成部分。它与大气交换大量的热,水,气体,颗粒和动量。这是从热带到极地的全球热量再分配的重要组成部分,它使我们的星球可居住,尤其是赤道约30°。在本文中,我们将回顾近期研究海洋在气候中的作用的工作,重点是IPCC第三次评估报告及其后的研究。我们讨论了海洋气候变率的一般性质以及随机变率在大气与海洋相互作用中的重要作用。我们认为海洋与大气之间具有气候意义的生物地球化学相互作用的证据越来越多。几种辐射重要气体(尤其是CO_2)的海-气交换是改变其大气浓度的主要机制。一些更具活性的气体,例如二甲基硫,可以改变云的形成,从而改变反照率。含铁的颗粒物起源于陆地,会改变海洋的初级生产力,从而改变对其他生物地球化学交换的反馈。我们表明,不仅热带太平洋海盆可以表现出海-气耦合,而且热带大西洋和印度洋也可以。还回顾了北太平洋和南洋(圆极波)中更长寿的相互作用。考察了热盐循环在长期而突然的气候变化中的作用,海洋的淡水预算是变化程度和寿命的关键因素。地中海外流造成突变的可能性增加了。最后,我们考察了未来全球变暖中盐卤变化的可能性。

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