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Nitric Oxide in Climatological Global Energy Budget During 1982-2013

机译:一氧化氮在气候全球能源在1982 - 2013年预算

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Over the past decades, temperature and density of the upper atmosphere show negative trends and this decrease of the upper atmospheric temperature is attributed to the declining neutral density. Specifically, nitric oxide (NO) and carbon dioxide (CO_2) govern thermospheric cooling at 5.3 and 15 μm, respectively. While a lot of efforts have focused on the CO_2 effects on the long-term trends, relatively less attention has been paid to the impacts by NO, which responds to solar and geomagnetic activities dynamically. In this study, we investigate the role of NO in climatological global energy budget for the recent three solar cycles using the Global Ionosphere-Thermosphere Model. From 1982 to 2013, the F10.7 and Ap indices showed a decadal decrease of ~8% and ~20%, respectively. By imposing temporal-varying F10.7 and Ap values in the simulations, we find a decadal change of -0.28 × 10~(11)Wor -17.3% in total NO cooling power, which agrees well with that (-0.34 × 10~(11) W or -17.2%) from the empirical Thermosphere Climate Index derived from the Thermosphere Ionosphere Mesosphere Energetics and Dynamics/Sounding of the Atmosphere using Broadband Emission Radiometry data. Neutral density decreases by 10-20% at 200-450 km and T_(ex) decreases by 25.3 K per decade. The deduced-decadal change of NO cooling reaches ~25% of that of total heating at ~130 km and its significance decreases with altitude.
机译:在过去的几十年中,温度和密度高层大气中显示消极的趋势和这种减少的上层大气温度是归因于下降中性密度。和二氧化碳(二氧化碳)管理thermospheric冷却分别为5.3和15μm,。许多努力都集中在二氧化碳的影响长期趋势,相对更少一直注意的影响没有,太阳能和地磁响应活动动态。在气候的作用没有进行调查最近的全球能源预算三个太阳能使用全球Ionosphere-Thermosphere周期模型。指标显示十年~ 8%和降低~ 20%。F10.7和Ap值模拟,我们发现一个年代际变化为-0.28×10 ~(11)磨破-17.3%总没有冷却能力,这与同意(-0.34×10 ~ (11)W或-17.2%)的实证气候指数来自热大气层热大气层电离层中间层能量和动力学/大气的使用宽带发射辐射测量数据。密度降低了10 - 20%,在200 - 450公里T_(特异)识别每十年下降了25.3 K。deduced-decadal改变没有冷却达到~ 25%的总加热及其~ 130公里意义和高度降低。

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