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SEMIC: an efficient surface energy and mass balance model applied to the Greenland ice sheet

机译:SEMIC:适用于格陵兰冰原的有效表面能和质量平衡模型

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pstrongAbstract./strong We present SEMIC, a Surface Energy and Mass balance model of Intermediate Complexity for snow- and ice-covered surfaces such as the Greenland ice sheet. SEMIC is fast enough for glacial cycle applications, making it a suitable replacement for simpler methods such as the positive degree day (PDD) method often used in ice sheet modelling. Our model explicitly calculates the main processes involved in the surface energy and mass balance, while maintaining a simple interface and requiring minimal data input to drive it. In this novel approach, we parameterise diurnal temperature variations in order to more realistically capture the daily thawa??freeze cycles that characterise the ice sheet mass balance. We show how to derive optimal model parameters for SEMIC specifically to reproduce surface characteristics and day-to-day variations similar to the regional climate model MAR (Mod?¨le Atmosph??rique R??gional, version 2) and its incorporated multilayer snowpack model SISVAT (Soil Ice Snow Vegetation Atmosphere Transfer). A validation test shows that SEMIC simulates future changes in surface temperature and surface mass balance in good agreement with the more sophisticated multilayer snowpack model SISVAT included in MAR. With this paper, we present a physically based surface model to the ice sheet modelling community that is general enough to be used with in situ observations, climate model, or reanalysis data, and that is at the same time computationally fast enough for long-term integrations, such as glacial cycles or future climate change scenarios./p.
机译:> >摘要。我们介绍SEMIC,这是一种表面复杂度和质量平衡的模型,适用于冰雪覆盖的表面(如格陵兰冰原)。 SEMIC足够快,可用于冰川循环应用,因此它可以替代简单的方法,例如冰盖建模中经常使用的正度日(PDD)方法。我们的模型显式计算涉及表面能和质量平衡的主要过程,同时保持简单的界面并需要最少的数据输入来驱动它。在这种新颖的方法中,我们对昼夜温度变化进行参数化,以便更实际地捕获表征冰盖质量平衡的每日thawa ??冻结周期。我们将展示如何为SEMIC推导最佳模型参数,以专门复制类似于地面气候模型MAR(Mod?¨leAtmosph ?? rique R ?? gional,版本2)及其结合的多层结构的表面特征和每日变化。积雪模型SISVAT(土壤冰雪植被大气转移)。验证测试表明SEMIC与MAR中包含的更复杂的多层积雪模型SISVAT很好地模拟了未来表面温度和表面质量平衡的变化。在本文中,我们向冰盖建模社区介绍了一个基于物理的表面模型,该模型足够通用,可以与原位观测,气候模型或再分析数据一起使用,并且同时计算速度足以满足长期需求整合,例如冰川周期或未来的气候变化情景。

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