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Earths energy imbalance since 1960 in observations and CMIP5 models

机译:自1960年以来观测和CMIP5模型中地球的能量失衡

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摘要

Observational analyses of running 5 year ocean heat content trends (Ht) and net downward top of atmosphere radiation (N) are significantly correlated (r ∼ 0.6) from 1960 to 1999, but a spike in Ht in the early 2000s is likely spurious since it is inconsistent with estimates of N from both satellite observations and climate model simulations. Variations in N between 1960 and 2000 were dominated by volcanic eruptions and are well simulated by the ensemble mean of coupled models from the Fifth Coupled Model Intercomparison Project (CMIP5). We find an observation-based reduction in N of − 0.31 ± 0.21 W m−2 between 1999 and 2005 that potentially contributed to the recent warming slowdown, but the relative roles of external forcing and internal variability remain unclear. While present-day anomalies of N in the CMIP5 ensemble mean and observations agree, this may be due to a cancelation of errors in outgoing longwave and absorbed solar radiation.Key Points class="unordered" style="list-style-type:disc">Observed maximum in ocean heat content trend in early 2000s is likely spuriousNet incoming radiation (N) reduced by 0.31 ± 0.21 W m−2 during the warming pausePresent-day estimates of N may contain opposing errors in radiative components
机译:从1960年到1999年,连续5年的海洋热含量趋势(Ht)和大气辐射的净下行顶部(N)的观测分析显着相关(r〜0.6),但是2000年代初Ht的峰值很可能是虚假的,因为与卫星观测和气候模型模拟得出的N估算值不一致。 1960年至2000年之间N的变化主要是由火山喷发引起的,并且可以通过第五个耦合模型比较项目(CMIP5)的耦合模型的整体平均值很好地模拟。我们发现在1999年至2005年间,基于观测的N减少了− 0.31±0.21 W m −2 ,这可能是导致近期变暖的原因,但外部强迫和内部变化的相对作用仍不清楚。尽管目前CMIP5总体平均值中的N异常与观测值一致,但这可能是由于消除了长波和吸收的太阳辐射中的误差。要点 class =“ unordered” style =“ list-style-type :disc“> <!-list-behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 在2000年代初观测到的海洋热含量趋势最大值可能是虚假的 在升温暂停期间净入射辐射(N)降低0.31±0.21 W m −2 当前N的天估计值可能包含相对的辐射误差组件

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