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Pliocene Model Intercomparison Project: implementation strategy and mid-Pliocene Global climatology using GENESIS v3.0 GCM

机译:上新世模式比对项目:使用GENESIS v3.0 GCM的实施策略和上新世中期全球气候

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The mid-Pliocene Warm Period (3.29 to 2.97 Ma BP) has been identified as an analogue for the future, with the potential to help understand climate processes in a warmer than modern world. Sets of climate proxies, combined to provide boundary conditions for Global Climate Model (GCM) simulations of the mid-Pliocene, form the basis for the international, data-driven Pliocene Model Intercomparison Project (PlioMIP). Here, we outline the strategy for implementing pre-industrial (modern) and mid-Pliocene forcings and boundary conditions into the GENESIS version 3 GCM, as part of PlioMIP. We describe the prescription of greenhouse gas concentrations and orbital parameters and the implementation of geographic boundary conditions such as land-ice-sea distribution, topography, sea surface temperatures, sea ice extent, vegetation, soils, and ice sheets. We further describe model-specific details including spin-up and integration times. In addition, the global climatology of the mid-Pliocene as simulated by the GENESIS v3 GCM is analyzed and compared to the pre-industrial control simulation. The simulated climate of the mid-Pliocene warm interval is found to differ considerably from pre-industrial. We identify model sensitivity to imposed forcings, and internal feedbacks that collectively affect both local and far-field responses. Our analysis points out the need to assess both the direct impacts of external forcings and the combined effects of indirect, internal feedbacks. This paper provides the basis for assessing model biases within the PlioMIP framework, and will be useful for comparisons with other studies of mid-Pliocene climates.
机译:上新世中期(3.29至2.97 Ma BP)被确定为未来的类似物,具有帮助理解比现代世界更温暖的气候过程的潜力。多套气候代理,共同为上新世中期的全球气候模式(GCM)模拟提供边界条件,构成了国际数据驱动的上新世模式比对项目(PlioMIP)的基础。在这里,我们概述了将工业化前(现代)和中新世强迫和边界条件纳入GENESIS 3 GCM版本的策略,作为PlioMIP的一部分。我们描述了温室气体浓度和轨道参数的处方以及地理边界条件的实施,例如陆冰冰海分布,地形,海表温度,海冰范围,植被,土壤和冰盖。我们进一步描述特定于模型的细节,包括加速和集成时间。此外,分析了GENESIS v3 GCM模拟的上新世中期的全球气候,并将其与工业化前的控制模拟进行了比较。发现上新世中期暖期的模拟气候与工业化前有很大不同。我们确定了模型对施加的强迫的敏感性,以及内部反馈共同影响本地和远场响应的敏感性。我们的分析指出,既需要评估外部强迫的直接影响,又要评估内部间接反馈的综合影响。本文为评估PlioMIP框架内的模型偏差提供了基础,并将有助于与上新世中期的其他研究进行比较。

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