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Implications of the O + OH reaction in hydroxyl nightglow modeling

机译:O + OH反应在羟基夜光建模中的意义

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pstrongAbstract./strong The hydroxyl nightglow has been examined anew using calculated rate constants for the key reactive and inelastic O + OH(iv/i') quenching processes. These constants have been obtained from quasiclassical trajectories run on the adiabatic ab initio-based double many-body expansion-IV potential energy surface for the ground state of the hydroperoxil radical. Significant differences in the vertical profiles of vibrationally excited hydroxyl radicals are obtained relative to the ones predicted by Adler-Golden (1997) when employing an O + OH(iv/i') effective rate constant chosen to be twice the experimental value for quenching of OH(iv/i' = 1). At an altitude of 90 km, such deviations range from ~ 80% for iv/i' = 1 to only a few percent for iv/i' = 9. Other mechanisms reported in the literature have also been utilized, in particular those that loosely yield lower and upper limits in the results, namely sudden-death and collisional cascade. Finally, the validity of the steady-state hypothesis is analysed through comparison with results obtained via numerical integration of the master equations./p.
机译:> >摘要。已使用计算的速率常数重新计算了关键的反应性和非弹性O + OH( v ')淬灭过程中的羟基夜光。这些常数是从绝热的从头算基于双多体膨胀-IV势能表面的氢过氧化物基的基态运行的准经典轨迹获得的。相对于Adler-Golden(1997)预测的,采用O + OH(iv)的有效速率常数选择为两倍的O + OH而言,振动激发的羟基自由基的垂直分布具有显着差异。 OH( v '= 1)淬灭的实验值。在90 km的高度上,这样的偏差范围从 v '= 1的〜80%到 v '= 9的仅几个百分点。还利用了那些方法,特别是那些松散地产生结果上下限的方法,即突然死亡和碰撞级联。最后,通过与主方程数值积分获得的结果进行比较,分析了稳态假设的有效性。

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