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Reversibility in an Earth System model in response to CO2 concentration changes

机译:地球系统模型对CO2浓度变化的可逆性

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We use the HadGEM2-ES Earth System model to examine the degree of reversibility of a wide range of components of the Earth System under idealized climate change scenarios where the atmospheric CO2 concentration is gradually increased to four times the pre-industrial level and then reduced at a similar rate from several points along this trajectory. While some modelled quantities respond almost immediately to the atmospheric CO2 concentrations, others exhibit a time lag relative to the change in CO2. Most quantities also exhibit a lag relative to the global-mean surface temperature change, which can be described as a hysteresis behaviour. The most surprising responses are from low-level clouds and ocean stratification in the Southern Ocean, which both exhibit hysteresis on timescales longer than expected. We see no evidence of critical thresholds in these simulations, although some of the hysteresis phenomena become more apparent above 2?×?CO2 or 3?×?CO2. Our findings have implications for the parametrization of climate impacts in integrated assessment and simple climate models and for future climate studies of geoengineering scenarios.
机译:我们使用HadGEM2-ES地球系统模型在理想的气候变化情景下检查地球系统各组成部分的可逆性程度,其中理想的气候变化情景是大气CO2浓度逐渐增加到工业化前水平的四倍,然后在沿着该轨迹从几个点得出的比率相似。虽然一些模型化的量几乎立即对大气中的CO2浓度做出响应,但其他模型化量相对于CO2的变化却存在时滞。相对于整体平均表面温度变化,大多数量还显示出滞后现象,这可以描述为滞后行为。最令人惊讶的响应来自南大洋的低层云层和海洋分层,它们在时间尺度上都表现出比预期更长的滞后现象。尽管在2?×?CO2或3?×?CO2以上,一些滞后现象变得更加明显,但在这些模拟中我们看不到临界阈值的证据。我们的发现对综合评估和简单气候模型中气候影响的参数化以及对地球工程情景的未来气候研究具有影响。

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