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首页> 外文期刊>Geophysical Research Letters >The role of thermal inertia in the representation of mean and diurnal range of surface temperature in semiarid and arid regions
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The role of thermal inertia in the representation of mean and diurnal range of surface temperature in semiarid and arid regions

机译:热惯性在半干旱和干旱地区表面温度平均和日变化范围的表示中的作用

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摘要

In this article we show the possible role of thermal inertia in the large spread of the simulated surface temperature over arid and semiarid regions among climate models. The surface-atmosphere interactions are investigated based on single-column simulations of the DIurnal land-atmosphere Coupling Experiment and on global simulations. Low values of the surface thermal inertia increase the diurnal temperature range (DTR) and the daytime turbulent heat fluxes. The diurnal response of surface temperature to the thermal inertia is asymmetric between daytime and nighttime, inducing a change in the daily mean surface temperature that can reach several degrees over large areas. This asymmetrical response to thermal inertia is shown to be due to the diurnal contrast of the stability state of the atmospheric boundary layer. Thermal inertia in dry regions plays a critical role on both DTR and surface mean temperature and needs to be carefully represented in land surface models.
机译:在本文中,我们展示了热惯性在气候模型之间的干旱和半干旱地区模拟表面温度的大范围传播中的可能作用。基于昼间陆-气耦合实验的单列模拟和整体模拟,研究了地-气相互作用。较低的表面热惯性值会增加昼夜温度范围(DTR)和白天的湍流通量。表面温度对热惯性的昼夜响应在白天和夜间之间是不对称的,从而导致每日平均表面温度发生变化,在大范围内可能达到几度。对热惯性的这种不对称响应被证明是由于大气边界层的稳定状态的昼夜对比度所致。干旱地区的热惯性在DTR和地表平均温度上都起着至关重要的作用,需要在地表模型中仔细表示。

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