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首页> 外文期刊>Journal of Climate >The sensitivity of latent heat flux to changes in the radiative forcing: a framework for comparing models and observations.
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The sensitivity of latent heat flux to changes in the radiative forcing: a framework for comparing models and observations.

机译:潜热通量对辐射强迫变化的敏感性:用于比较模型和观测结果的框架。

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A climate model must include an accurate surface physics scheme in order to examine the interactions between the land and atmosphere. Given an increase in the surface radiative forcing, the sensitivity of latent heat flux to available energy plays an important role in determining the energy budget and has a significant impact on the response of surface temperature. The Penman-Monteith equation is used to construct a theoretical framework for evaluating the climatology of evapotranspiration and the sensitivity of latent heat flux to available energy. Regional Climate Model version 3 coupled to Integrated Biosphere Simulator (RegCM3-IBIS); RegCM3 with its native land surface model, Biosphere-Atmosphere Transfer Scheme 1e (RegCM3-BATS1e); and Flux Network (FLUXNET) micrometeorological tower observations are compared and contrasted using the developed methodology. RegCM3-IBIS and RegCM3-BATS1e simulate the observed sensitivity of latent heat flux to available energy reasonably well during the summer on average; however, there are significant variations in the monthly values. Additional information provided by the physically based Penman-Monteith framework is employed for identifying deficiencies and guiding improvements in models, allowing calibration of both the climatology of evapotranspiration and the sensitivity of latent heat flux to available energy.
机译:一个气候模型必须包括一个准确的表面物理方案,以便检查土地与大气之间的相互作用。鉴于表面辐射强迫的增加,潜热通量对可用能量的敏感性在确定能量预算中起着重要作用,并且对表面温度的响应具有重大影响。 Penman-Monteith方程用于构建一个理论框架,用于评估蒸散的气候学以及潜热通量对可用能量的敏感性。与综合生物圈模拟器(RegCM3-IBIS)耦合的区域气候模型版本3; RegCM3及其原生陆地表面模型,生物圈-大气转移计划1e(RegCM3-BATS1e);使用发达的方法对Fluxnet和Fluxnet微气象塔的观测结果进行比较和对比。 RegCM3-IBIS和RegCM3-BATS1e平均模拟了夏季观测到的潜热通量对可用能量的敏感性。但是,月度值存在很大差异。基于物理的Penman-Monteith框架提供的其他信息可用于识别不足并指导模型的改进,从而可以对蒸散的气候学以及潜热通量对可用能量的敏感性进行校准。

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