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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Land use feedback on clear sky downward longwave radiation: A land use adapted model
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Land use feedback on clear sky downward longwave radiation: A land use adapted model

机译:晴空下行长波辐射的土地利用反馈:一种适应土地利用的模型

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The existing models for downwelling longwave (LW) radiation employ different formulations for clear sky entissivity calculation. Even though both the temperature and water vapor affect emissivity, most models use either a lump humidity parameter or only one of these effects because of existing correlation between the two parameters. These parameters are further affected by heterogeneous land use patterns and temporal changes in atmospheric circulation patterns. In this paper, a model considering the nonlinear temperature and water vapor pressure effects superpositioned in one equation to account for the net impact on clear sky emissivity is investigated. Furthermore, the developed model is enhanced to become robust and adaptable for different land uses. Ground radiometer and meteorological data applicable in the subtropical climate of Saint Johns River Water Management District (SJRWMD), FL, during the spring season are utilized for model development. The new model is tested against pyrgeometer data gathered above a crop in Bondville, IL, a rangeland in Ft. Peck, NIT, and an urban setting in Deland, FL. When the new parameterization is validated using 24 h average downwelling LW flux, it yields a Nash-Sutcliffe Efficiency (NSE) greater than 0.5, normalized Mean Bias Errors (MBE), and Root Mean Square Errors (RMSE) of less than 5% and 7%, respectively, with the latter being the smallest deviations with respect to existing formulations. Copyright (C) 2007 Royal Meteorological Society.
机译:现有的向下波长波(LW)辐射模型采用不同的公式来计算晴朗的天空可塑性。即使温度和水蒸气都影响发射率,但由于两个参数之间存在相关性,因此大多数模型要么使用总湿度参数,要么仅使用这些影响之一。这些参数进一步受到异质土地利用方式和大气环流方式时间变化的影响。本文研究了一个模型,该模型考虑了非线性温度和水蒸气压力效应,该模型叠加在一个方程中以说明对晴空发射率的净影响。此外,已开发的模型得到了增强,使其变得健壮并适用于不同的土地用途。用于春季开发的适用于佛罗里达州圣约翰斯河水管理区(SJRWMD)亚热带气候的地面辐射计和气象数据用于模型开发。该新模型针对在伊利诺伊州Ft牧场的伊利诺伊州邦德维尔的农作物上方收集的高温计数据进行了测试。 NIT的Peck和佛罗里达州Deland的城市环境。当使用平均24小时的下沉LW通量验证新的参数设置时,它会产生大于0.5的Nash-Sutcliffe效率(NSE),归一化的平均偏差误差(MBE)和均方根误差(RMSE)小于5%以及分别为7%,而后者是相对于现有配方的最小偏差。皇家气象学会(C)2007。

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