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TOMS profile shape error estimates at high latitude

机译:高纬度地区的TOMS轮廓形状误差估计

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Abstract: The Total Ozone Mapping Spectrometer (TOMS) ozone measurement is derived by comparing measured backscattered ultraviolet (BUV) radiances with theoretical radiances which are pre-computed using standard climatological ozone profiles and stored in a look-up table. Profile shape errors occur in this algorithm at high latitudes (or more specifically, high optical path lengths) when the actual vertical ozone distribution differs significantly from the standard profile used in constructing the tables. These errors are estimated using sensitivities derived from radiative transfer calculations and measurements of the actual ozone profile from Solar Backscatter Ultraviolet (SBUV) and Balloonsonde. These estimates include a short term uncertainty with a standard deviation of 10% in total column ozone amount as well as a systematic error in the long-term trend at very high solar zenith angles. At the maximum retrieval solar zenith angle of 88 degrees, these calculations indicate that TOMS long-term ozone depletions are over-estimated by 5%/decade. !12
机译:摘要:通过将测得的反向散射紫外线(BUV)辐射度与使用标准气候臭氧分布图预先计算并存储在查找表中的理论辐射度进行比较,可以得出臭氧总量测量仪(TOMS)的臭氧测量结果。当实际的垂直臭氧分布与构造表格所用的标准轮廓明显不同时,此算法在高纬度(或更具体而言,较高的光程长度)中会发生轮廓形状错误。这些误差是使用辐射转移计算得出的敏感度以及太阳背散射紫外线(SBUV)和气球探空仪对实际臭氧剖面的测量得出的。这些估计值包括短期不确定性,其总柱臭氧量的标准偏差为10%,以及在非常高的太阳天顶角下长期趋势中的系统误差。在88度的最大太阳太阳顶角时,这些计算表明TOMS的长期臭氧消耗被高估了5%/十年。 !12

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