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CMIP6/PMIP4 simulations of the mid-Holocene and Last Interglacial using HadGEM3: comparison to the pre-industrial era, previous model versions and proxy data

机译:CMIP6 / PMIP4中间全新世和上层间的模拟使用Hadgem3:与工业前时代,以前的模型版本和代理数据进行比较

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Palaeoclimate model simulations are an important tool to improve our understanding of the mechanisms of climate change. These simulations also provide tests of the ability of models to simulate climates very different to today. Here we present the results from two brand-new simulations using the latest version of the UK's physical climate model, HadGEM3-GC3.1; they are the mid-Holocene (~6 ka) and Last Interglacial (~127 ka) simulations, both conducted under the auspices of CMIP6/PMIP4. This is the first time this version of the UK model has been used to conduct palaeoclimate simulations. These periods are of particular interest to PMIP4 because they represent the two most recent warm periods in Earth history, where atmospheric concentration of greenhouse gases and continental configuration are similar to the pre-industrial period but where there were significant changes to the Earth's orbital configuration, resulting in a very different seasonal cycle of radiative forcing. Results for these simulations are assessed firstly against the same model's pre-industrial control simulation (a simulation comparison, to describe and understand the differences between the pre-industrial – PI – and the two palaeo simulations) and secondly against previous versions of the same model relative to newly available proxy data (a model–data comparison, to compare all available simulations from the same model with proxy data to assess any improvements due to model advances). The introduction of this newly available proxy data adds further novelty to this study. Globally, for metrics such as 1.5 m temperature and surface rainfall, whilst both the recent palaeoclimate simulations are mostly capturing the expected sign and, in some places, magnitude of change relative to the pre-industrial, this is geographically and seasonally dependent. Compared to newly available proxy data (including sea surface temperature – SST – and rainfall) and also incorporating data from previous versions of the model shows that the relative accuracy of the simulations appears to vary according to metric, proxy reconstruction used for comparison and geographical location. In some instances, such as mean rainfall in the mid-Holocene, there is a clear and linear improvement, relative to proxy data, from the oldest to the newest generation of the model. When zooming into northern Africa, a region known to be problematic for models in terms of rainfall enhancement, the behaviour of the West African monsoon in both recent palaeoclimate simulations is consistent with current understanding, suggesting a wetter monsoon during the mid-Holocene and (more so) the Last Interglacial, relative to the pre-industrial era. However, regarding the well-documented “Saharan greening” during the mid-Holocene, results here suggest that the most recent version of the UK's physical model is still unable to reproduce the increases suggested by proxy data, consistent with all other previous models to date.
机译:古怪的模型模拟是改善我们对气候变化机制的理解的重要工具。这些模拟还提供了模型模拟与今天截然不同的模型能力的测试。在这里,我们使用最新版本的英国物理气候模型,介绍了两个全新模拟的结果,Hadgem3-GC3.1;它们是全新世(〜6 kA)和最后一个中间夹(〜127 kA)模拟,都在CMIP6 / PMIP4的主动下进行。这是英国模型的第一次已被用于进行古藏模拟。这些时期对PMIP4特别感兴趣,因为它们代表了地球历史中最近的两个温暖时期,其中温室气体和大陆配置的大气浓度类似于预工业期间,但在地球轨道配置有重大变化的情况下,导致辐射强制季节性季节性循环非常不同。首先评估这些模拟的结果,与相同的模型的预工业控制模拟(模拟比较,描述和理解Palae-and The Palaeo模拟之间的差异),其次是对同一模型的先前版本相对于新可用的代理数据(模型数据比较,将所有可用模拟与代理数据相同的与代理数据进行比较,以评估模型进步导致的任何改进)。这种新可获得的代理数据的引入增加了这项研究的进一步新颖性。在全球范围内,对于1.5米的温度和表面降雨等度量,虽然近期的古爱罗长模拟大多是捕获预期的标志,并且在某些地方,相对于预工业的变化程度,这是地理位置和季节性依赖。与新可用的代理数据(包括海面温度 - 和降雨)相比,还有来自先前版本的模型的数据表明,根据用于比较和地理位置的公制,代理重建,模拟的相对精度似乎不同。在某些情况下,例如中东期中的平均降雨,相对于代理数据,从最古老的模型到最新一代,存在明确和线性的改善。在放大到北非时,已知在降雨增强方面是模型有问题的区域,最近近期古典气候模拟中的西非季风的行为与目前的理解一致,建议在全新世时期和(更多所以)上一个中间的,相对于前工业时代。然而,关于中全新世的“撒哈拉绿化”良好,结果表明,英国的最新版本仍然无法重现代理数据建议的增加,与所有其他以前的模型迄今为止一致。

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