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Mesospheric Nitric Oxide Transport in WACCM

机译:中间层一氧化氮在WACCM运输

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Energetic particle precipitation (EPP) causes ionization of the main constituents of the Earth's atmosphere which leads to the production of nitric oxide (NO) throughout the polar mesosphere and lower thermosphere (MLT). Due to the long lifetime of NO during winter, it can also be transported deeper into the atmosphere by the mesospheric residual circulation (the indirect EEP effect). This study investigates the mesospheric indirect NO response to EEP using Whole Atmosphere Community Climate Model (WACCM) version 6. In comparison to observations from the instrument Solar Occultation For Ice Experiment (SOFIE) on the AIM (Aeronomy of Ice in the Mesosphere) satellite, a wintertime underestimation is found in the modeled mesospheric NO amount. WACCM's temperature profile is found to be vertically shifted compared to observations by SOFIE and by The Sounding of the Atmosphere using Broadband Emission Radiometry instrument on the Thermosphere Ionosphere Mesosphere Energetics Dynamics satellite (SABER). The discrepancies in NO are therefore attributed to the model's ability to simulate the dynamics responsible for the indirect EEP effect. The drivers of this transport are investigated by sensitivity runs of WACCM's gravity wave forcing. Changing the amplitude of the non-orographic gravity waves and the Prandtl number improves the modeled vertical distribution of NO and temperature in the MLT region.
机译:高能粒子沉淀(EPP)的原因电离的主要成分地球大气层导致生产在极地的一氧化氮(NO)中间层和较低的热电离层(MLT)。没有冬天的长寿命也是运输深入到大气中气层剩余环流(间接的保留效果)。中层间接不应对下次使用整个气氛社区气候模型(WACCM)版本6。仪器太阳能掩星冰实验(苏菲)目标(高层大气物理学的冰中间层)卫星,一个冬季低估的建模中间层的再多。配置文件是垂直转移而苏菲和观察使用宽带测深的大气发射辐射测量仪器上的热大气层电离层中间层能量动力学卫星(剑)。没有因此归因于模型的负责模拟动态的能力间接的燃灯的效果。运输由敏感性的研究WACCM的重力波强迫。non-orographic重力波的振幅建模的普朗特数提高了垂直的MLT没有和温度的分布地区。

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