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Decadal Ocean Heat Redistribution Since the Late 1990s and Its Association with Key Climate Modes

机译:1990年代末以来的年代际海洋热量再分配及其与关键气候模式的关系

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Ocean heat content (OHC) is the major component of the earth’s energy imbalance. Its decadal scale variability has been heavily debated in the research interest of the so-called “surface warming slowdown” (SWS) that occurred during the 1998–2013 period. Here, we first clarify that OHC has accelerated since the late 1990s. This finding refutes the concept of a slowdown of the human-induced global warming. This study also addresses the question of how heat is redistributed within the global ocean and provides some explanation of the underlying physical phenomena. Previous efforts to answer this question end with contradictory conclusions; we show that the systematic errors in some OHC datasets are partly responsible for these contradictions. Using an improved OHC product, the three-dimensional OHC changes during the SWS period are depicted, related to a reference period of 1982–1997. Several “hot spots” and “cold spots” are identified, showing a significant decadal-scale redistribution of ocean heat, which is distinct from the long-term ocean-warming pattern. To provide clues for the potential drivers of the OHC changes during the SWS period, we examine the OHC changes related to the key climate modes by regressing the Pacific Decadal Oscillation (PDO), El Ni?o-Southern Oscillation (ENSO), and Atlantic Multi-decadal Oscillation (AMO) indices onto the de-trended gridded OHC anomalies. We find that no single mode can fully explain the OHC change patterns during the SWS period, suggesting that there is not a single “pacemaker” for the recent SWS. Our observation-based analyses provide a basis for further understanding the mechanisms of the decadal ocean heat uptake and evaluating the climate models.
机译:海洋热量(OHC)是地球能量失衡的主要因素。 1998年至2013年期间发生的所谓“地表暖化减慢”(SWS)的研究兴趣已对其年代际尺度的变化进行了激烈讨论。在这里,我们首先要弄清楚OHC自1990年代后期以来已经加速了。这一发现驳斥了由人类引起的全球变暖放缓的概念。这项研究还解决了热如何在全球海洋中重新分配的问题,并对潜在的物理现象提供了一些解释。先前为回答这个问题所做的努力以矛盾的结论结束。我们表明,某些OHC数据集中的系统错误是造成这些矛盾的部分原因。使用改进的OHC产品,描绘了SWS期间的三维OHC变化,与1982-1997年的参考时期有关。确定了几个“热点”和“冷点”,显示了海洋热量的年代际规模重大重新分配,这与长期的海洋变暖模式不同。为了为SWS时期OHC变化的潜在驱动因素提供线索,我们通过回归太平洋年代际涛动(PDO),厄尔尼诺-南方涛动(ENSO)和大西洋对与关键气候模式有关的OHC变化进行了研究。多趋势年代际振荡(AMO)指数显示趋势下降的网格OHC异常。我们发现,在SWS期间,没有任何一种模式可以完全解释OHC的变化模式,这表明最近的SWS没有一个“起搏器”。我们基于观测的分析为进一步了解十年际海洋热量吸收的机制和评估气候模型提供了基础。

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