首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >TRACER-TRACER CORRELATIONS - THREE-DIMENSIONAL MODEL SIMULATIONS AND COMPARISONS TO OBSERVATIONS
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TRACER-TRACER CORRELATIONS - THREE-DIMENSIONAL MODEL SIMULATIONS AND COMPARISONS TO OBSERVATIONS

机译:跟踪器与跟踪器的关联-三维模型模拟和与观测的比较

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Calculations of the stratospheric distributions of 12 trace species (N2O, CH4, CFCl3, CF2Cl2, CFCl2CF2Cl, CHF2Cl, CH3Cl, CH3CCl3, CCl4, CH3Br, CF2ClBr, and CF3Br) are performed by using the Goddard Institute for Space Studies/University of California at Irvine (GISS/UCI) three-dimensional chemistry transport model (CTM). Because each of these gases is either an important precursor of ozone-depleting radicals or a significant greenhouse molecule, it is critical that we understand their source strengths and atmospheric lifetimes. In this study, lifetimes against stratospheric loss are determined from the CTM calculations and compared with the currently accepted values. Calculated distributions of these species are compared with observations taken from aircraft platforms at midlatitudes via their correlation with N2O. The sensitivity of the calculated correlations to rate parameters, photolysis cross sections, and lower boundary conditions is explored for several key species. For most of the compounds examined the correlations can be simulated, within the uncertainty of the observations, by using current photochemistry. Finally, the use of correlation diagrams (i.e., scatterplots of one species versus another) as a tool for determining the lifetimes of trace gases on the basis of atmospheric observations is examined in the framework of the theory proposed by Plumb and Ko [1992]. [References: 55]
机译:使用戈达德空间研究所/加利福尼亚大学的12位计算物种(N2O,CH4,CFCl3,CF2Cl2,CFCl2CF2Cl,CHF2Cl,CH3Cl,CH3CCl3,CCl4,CH3Br,CF2ClBr和CF3Br)的平流层分布进行计算尔湾(GISS / UCI)三维化学迁移模型(CTM)。由于每种气体都是消耗臭氧层自由基的重要前体或重要的温室分子,因此了解它们的来源强度和大气寿命至关重要。在这项研究中,根据CTM计算确定了针对平流层损失的寿命,并将其与当前接受的值进行了比较。通过将它们与N2O的相关性,将这些物种的计算分布与从中纬度飞机平台获得的观测结果进行了比较。研究了几种关键物种对速率参数,光解截面和下边界条件的计算相关性的敏感性。对于大多数所检查的化合物,可以通过使用当前的光化学方法在观测不确定性范围内模拟相关性。最后,在Plumb和Ko [1992]提出的理论框架下,研究了使用相关图(即一种物种与另一种的散布图)作为根据大气观测确定痕量气体寿命的工具。 [参考:55]

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