Air Temperature Intermittency and Photofragment Excitation

Adrian F. Tuck
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Abstract

Four observational results: the intermittency of air temperature; its correlation with ozone photodissociation rate; the diurnal variation of ozone in the upper stratosphere; and the cold bias of meteorological analyses compared to observations, are reviewed. The excitation of photofragments and their persistence of velocity after collision is appealed to as a possible explanation. Consequences are discussed, including the interpretation of the Langevin equation and fluctuation–dissipation in the atmosphere, the role of scale invariance and statistical multifractality, and what the results might mean for the distribution of isotopes among atmospheric molecules. An adjunct of the analysis is an exponent characterizing jet streams. Observational tests are suggested.
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气温间断与光碎片激发
四个观测结果:气温的间歇性;其与臭氧光解速率的相关性;平流层上部臭氧的日变化;并对气象分析与观测的冷偏差进行了比较。光碎片的激发和碰撞后速度的持续被认为是一种可能的解释。讨论了结果,包括对朗之万方程和大气中的波动耗散的解释,尺度不变性和统计多重分形的作用,以及结果对大气分子中同位素分布的意义。该分析的附加部分是表征喷射流的指数。建议进行观察试验。
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