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Impact of different definitions of clear-sky flux on the determination of longwave cloud radiative forcing: NICAM simulation results

机译:透明天空通量不同定义对长波云辐射强制测定的影响:NICAM仿真结果

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Using one month of the cloud-resolving Nonhydrostatic Icosahedral Atmospheric Model (NICAM) simulations, we examined the impact of different definitions of clear-sky flux on the determination of longwave cloud radiative forcing (CRF). Because the satellite-like cloud-free composite preferentially samples drier conditions relative to the all-sky mean state, the conventional clear-sky flux calculation using the all-sky mean state in the model may represent a more humid atmospheric state in comparison to the cloud-free state. The drier bias is evident for the cloud-free composite in the NICAM simulations, causing an overestimation of the longwave CRF by about 10% compared to the NICAM simulated longwave CRF. Overall, water vapor contributions of up to 10% of the total longwave CRF should be taken account for making model-generated cloud forcing comparable to the satellite measurements.
机译:使用一个月的云解析非水压二氧化二思型大气模型(NiCAM)模拟,我们检查了透明天空助焊剂不同定义对龙波辐射强制的影响(CRF)的影响。由于卫星无云复合物优先样本相对于全天平均状态的干燥条件,所以使用模型中的全天平均状态的传统清晰天线计算可以代表更潮湿的气氛状态与无云状态。与NiCam模拟中的无云复合材料相比,干燥剂偏差是显而易见的,与NiCAM模拟的LongWave CRF相比,龙波CRF的高度约为10%。总体而言,应考虑到总朗波韦克CRF总量的10%的水蒸气贡献,以便制作模型产生的云强迫与卫星测量相当。

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