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Comparison of Measured and Modeled Nocturnal Clear Sky Longwave Downward Radiation at Payerne, Switzerland

机译:瑞士Payerne测量和模型夜间透明天空龙波下游辐射的比较

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In this study, a comparison of measured and modeled nocturnal clear sky Longwave Downward Radiation (LDR) in Payerne, Switzerland, was performed. The Radiative Transfer Models (RTM) MODTRAN and libRadtran were applied to compute LDR irradiances. Absorption coefficients for libRadtran calculations were generated using the line-by-line model ARTS and the band model LOWTRAN. 39 clear nights were chosen to calculate LDR and to compare with broadband LDR measurements and LDR measurements taken in the wavelength range 8 to 14 gm. To run the models, two different types of vertical pressure, temperature and humidity profiles were implemented: (a) radiosonde profiles normalized to 2 meter ground values of pressure, temperature and humidity and scaled to the total Integrated Water Vapor (IWV) content; (b) seasonal standard profiles of the McClatchey midlatitude atmosphere normalized to ground measurements and scaled to the total IWV content. In the broadband range, MODTRAN revealed mean differences (measured minus calculated LDR) of -1.2 Wm ~(-2) ± 2.5 Wm~(-2) and +7.7 Wm~(-2) ± 5.2 Wm~(-2) for profile (a) and (b) respectively. In the wavelength range 8 to 14 μm, mean differences were -1.4 Wm~(-2) ± 2.0 Wm~(-2) and +2.1 Wm~(-2) ± 3.7 Wm~(-2). LOWTRAN revealed mean biases of +6.0 Wm~(-2) ± 2.9 Wm~(-2) and +14.2 Wm~(-2) ± 5.6 Wm~(-2) in the broadband range. In the wavelength range 8 to 14 gm, the biases were +4.1 Wm~(-2) ± 2.4 Wm~(-2) and +7.4 Wm~(-2) ± 4.1 Wm~(-2) for profile (a) and (b) respectively. Line-by-line calculations using ARTS were only performed with profile (a) in the wavelength range 8 to 14 μm. Results showed a mean difference of -0.7 Wm~(-2) ± 2.0 Wm~(-2) between measurements and computations.
机译:在本研究中,进行了瑞士Payerne的测量和模型夜间透明天空龙波向下辐射(LDR)的比较。辐射转移模型(RTM)Modtran和Libradtran被应用于计算LDR Intradiances。使用逐行模型艺术和频带模型Lowtran产生Libradtran计算的吸收系数。选择39晴间夜晚,以计算LDR,并与宽带LDR测量和LDR测量相比,在8至14克的波长范围内。为了运行型号,实施了两种不同类型的垂直压力,温度和湿度型材:(a)无线电探测器曲线标准化为2米的压力,温度和湿度的地面值,并缩放到总集成的水蒸气(IWV)含量; (b)McClatchey中际气氛的季节标准配置文件标准化为地面测量并缩放到总IWV内容。在宽带范围内,Modtran显示出-1.2Wm〜(-2)±2.5wm〜(-2)和+7.7Wm〜(-2)±5.2Wm〜(-2)的平均差异(测量的减去计算的LDR)分别概况(a)和(b)。在波长范围为8〜14微米,平均差异-1.4了Wm〜(-2)±2.0〜了Wm(-2),2.1〜了Wm(-2)±3.7了Wm〜(-2)。 Lowtran透露了宽带范围内+6.0Wm〜(-2)±2.9 wm〜(-2)±2.9 wm±2.9 wm〜(-2)和+14.2Wm〜(-2)±5.6Wm〜(-2)。在8至14克的波长范围内,偏差为+ 4.1Wm〜(-2)±2.4Wm〜(-2)和+7.4Wm〜(-2)±4.1Wm〜(-2)±4.1Wm〜(-2),适用于(a) (b)分别。使用ARTS的逐行计算仅在波长范围8至14μm的轮廓(a)中执行。结果显示在测量和计算之间的-0.7Wm〜(-2)±2.0Wm〜(-2)的平均差异。

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