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Heat and carbon coupling reveals ocean warming due to circulation changes

机译:热量和碳耦合揭示了由于循环变化导致的海洋变暖

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摘要

Anthropogenic global surface warming is proportional to cumulative carbon emissions(1-3); this relationship is partly determined by the uptake and storage of heat and carbon by the ocean(4). The rates and patterns of ocean heat and carbon storage are influenced by ocean transport, such as mixing and large-scale circulation(5-10). However, existing climate models do not accurately capture the observed patterns of ocean warming, with a large spread in their projections of ocean circulation and ocean heat uptake(8,11). Additionally, assessing the influence of ocean circulation changes (specifically, the redistribution of heat by resolved advection) on patterns of observed and simulated ocean warming remains a challenge. Here we establish a linear relationship between the heat and carbon uptake of the ocean in response to anthropogenic emissions. This relationship is determined mainly by intrinsic parameters of the Earth system-namely, the ocean carbon buffer capacity, the radiative forcing of carbon dioxide and the carbon inventory of the ocean. We use this relationship to reveal the effect of changes in ocean circulation from carbon dioxide forcing on patterns of ocean warming in both observations and global Earth system models from the Fifth Coupled Model Intercomparison Project (CMIP5). We show that historical patterns of ocean warming are shaped by ocean heat redistribution, which CMIP5 models simulate poorly. However, we find that projected patterns of heat storage are primarily dictated by the pre-industrial ocean circulation (and small changes in unresolved ocean processes)-that is, by the patterns of added heat owing to ocean uptake of excess atmospheric heat rather than ocean warming by circulation changes. Climate models show more skill in simulating ocean heat storage by the pre-industrial circulation compared to heat redistribution, indicating that warming patterns of the ocean may become more predictable as the climate warms.A linear relationship between the storage of heat and carbon in global oceans in response to anthropogenic emissions is used to reconstruct the effect of circulation changes on past and future ocean warming patterns.
机译:人为全球表面变暖与累积碳排放量成比例(1-3);这种关系部分地由海洋的热量和碳的吸收和储存部分决定(4)。海洋热量和碳储存的速率和模式受海洋运输的影响,例如混合和大规模循环(5-10)。然而,现有的气候模型不准确地捕捉观察到的海洋变暖模式,在海洋循环和海洋热量摄取的投影中具有大的蔓延(8,11)。此外,评估海洋循环变化的影响(具体而言,通过解决的平流的热量的重新分配)对观察和模拟海洋变暖的模式仍然是一个挑战。在这里,我们在响应人为排放时建立海洋的热量和碳吸收之间的线性关系。这种关系主要由地球系统的内在参数确定 - 即海洋碳缓冲能力,二氧化碳的辐射强制和海洋的碳库存。我们使用这种关系来揭示来自二氧化碳的海洋循环变化的影响从第五耦合模型相互比较项目(CMIP5)中的观测和全球地球系统模型中的海洋中的海洋模式。我们表明海洋变暖的历史模式是由海洋热再分分配的塑造,CMIP5模型模拟差。但是,我们发现预计的蓄热模式主要由工业前海洋循环(以及未解决的海洋过程中的小变化)决定 - 这是由于额外的散热的模式,由于海洋吸收过量的大气热而不是海洋通过循环变化变暖。气候模型表明,与热再分布相比,通过预工业循环模拟海洋热储的技能,表明海洋的变暖模式可能变得更加可预测,因为气候变暖。在全球海洋中储存热量和碳之间的线性关系响应人为排放用于重建循环变化对过去和未来海洋变暖模式的影响。

著录项

  • 来源
    《Nature》 |2020年第7820期|227-233|共7页
  • 作者

    Bronselaer Ben; Zanna Laure;

  • 作者单位

    Univ Oxford Atmospher Ocean & Planetary Phys Oxford England|Geophys Fluid Dynam Lab Princeton NJ 08540 USA|Univ Arizona Dept Geosci Tucson AZ 85721 USA|Princeton Univ Program Atmospher & Ocean Sci Princeton NJ 08544 USA;

    Univ Oxford Atmospher Ocean & Planetary Phys Oxford England|NYU Courant Inst Math Sci New York NY USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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