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Soil temperature response in Korea to a changing climate using a land surface model

机译:利用地表模型,韩国对气候变化的土壤温度响应

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摘要

The land surface processes play an important role in weather and climate systems through its regulation of radiation, heat, water and momentum fluxes. Soil temperature (ST) is one of the most important parameters in the land surface processes; however, there are few extensive measurements of ST with a long time series in the world. According to the CLImatology of Parameters at the Surface (CLIPS) methodology, the output of a trusted Soil-Vegetation- Atmosphere Transfer (SVAT) scheme can be utilized instead of observations to investigate the regional climate of interest. In this study, ST in South Korea is estimated in a view of future climate using the output from a trusted SVAT scheme - the University of TOrino model of land Process Interaction with Atmosphere (UTOPIA), which is driven by a regional climate model. Here characteristic changes in ST are analyzed under the IPCC A2 future climate for 2046-2055 and 2091-2100, and are compared with those under the reference climate for 1996-2005. The UTOPIA results were validated using the observed ST in the reference climate, and the model proved to produce reasonable ST in South Korea. The UTOPIA simulations indicate that ST increases due to environmental change, especially in air temperature (AT), in the future climate. The increment of ST is proportional to that of AT except for winter. In wintertime, the ST variations are different from region to region mainly due to variations in snow cover, which keeps ST from significant changes by the climate change.
机译:陆地表面过程通过调节辐射,热量,水和动量通量,在天气和气候系统中发挥重要作用。土壤温度(ST)是地表过程中最重要的参数之一。但是,在世界范围内,很少有关于长时间序列的ST的广泛测量。根据地表参数气候学(CLIPS)方法,可以利用可信的土壤-植被-大气迁移(SVAT)方案的输出来代替观测来研究感兴趣的区域气候。在这项研究中,根据受信任的SVAT计划(都灵大学土地过程与大气相互作用模型(UTOPIA)的模型)的输出,根据未来气候对韩国的ST进行了估算,该模型由区域气候模型驱动。在此分析了IPCC A2未来气候下2046-2055和2091-2100的ST的特征变化,并与1996-2005年参考气候下的ST的特征变化进行了比较。 UTOPIA结果在参考气候下使用观测到的ST进行了验证,并且该模型在韩国证明可以产生合理的ST。 UTOPIA模拟表明,由于环境变化,尤其是未来气候中的气温(AT),ST会增加。除冬季外,ST的增量与AT的增量成比例。在冬季,ST的变化因地区而异,这主要是由于积雪的变化,这使ST不受气候变化的重大影响。

著录项

  • 来源
    《Asia-Pacific journal of atmospheric sciences》 |2017年第4期|457-470|共14页
  • 作者单位

    Ewha Womans Univ, Dept Environm Sci & Engn, 52 Ewhayeodae Gil, Seoul 03760, South Korea|Ewha Womans Univ, Dept Climate & Energy Syst Engn, Seoul, South Korea|Ewha Womans Univ, Severe Storm Res Ctr, Seoul, South Korea|Ewha Womans Univ, Ctr Climate Environm Change Predict Res, Seoul, South Korea;

    Ewha Womans Univ, Dept Environm Sci & Engn, 52 Ewhayeodae Gil, Seoul 03760, South Korea|Ewha Womans Univ, Severe Storm Res Ctr, Seoul, South Korea|Ewha Womans Univ, Ctr Climate Environm Change Predict Res, Seoul, South Korea|Karl Franzens Univ Graz, NAWI Graz, Inst Phys, Inst Geophys Astrophys & Meteorol, Graz, Austria;

    Ewha Womans Univ, Dept Climate & Energy Syst Engn, Seoul, South Korea|Ewha Womans Univ, Severe Storm Res Ctr, Seoul, South Korea|Univ Torino, Dept Phys, Turin, Italy|Univ Torino, NatRisk Ctr, Turin, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Land surface process; soil temperature; climate change; soil-vegetation-atmosphere transfer (SVAT) scheme; University of TOrino model of land Process Interaction with Atmosphere (UTOPIA);

    机译:地表过程;土壤温度;气候变化;土壤-植被-大气转换(SVAT)方案;都灵大学土地与大气相互作用的模型(UTOPIA);

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