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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >PROPERTIES OF MOUNT PINATUBO AEROSOLS AS DERIVED FROM NIMBUS 7 TOTAL OZONE MAPPING SPECTROMETER MEASUREMENTS
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PROPERTIES OF MOUNT PINATUBO AEROSOLS AS DERIVED FROM NIMBUS 7 TOTAL OZONE MAPPING SPECTROMETER MEASUREMENTS

机译:从NIMBUS 7总臭氧映射光谱仪测量得出的皮纳图博山气溶胶的性质

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The perturbations to the radiances measured by the Nimbus 7 total ozone mapping spectrometer (TOMS) during the 18 months after the eruption of Mount Pinatubo are used to derive weekly zonal mean values for the stratospheric aerosol optical thickness at 312.5 nm and zonal-mean values for the area-weighted or effective radius. The method uses the TOMS observations, on both sides of the orbital track, of the detailed structure in the backscattering region of the aerosol-scattering phase function. Spatial and temporal evolution of the aerosol optical thickness and effective radius is obtained for the tropical region (25 degrees N to 25 degrees S) during most of the period mid-July 1991 to December 1992. The largest derived value of optical thickness was 0.22 (+36%/-10%), obtained for the latitude zone from 5 degrees to 15 degrees S at the end of July 1991. By the end of 1992, tropical optical depths varied from 0.02 to 0.06 over the 25 degrees N to 25 degrees S geographical area. The main source of uncertainty in the derived optical depth is the altitude of the aerosol layer. The inferred time evolution of the effective radius clearly shows an increase in particle size. At the end of July 1991, effective radius values of about 0.5 mu m were derived, while in the fall of 1992, these values were between 0.7 and 1.4 mu m. Corrections and error estimates are obtained for the measured ozone amounts. The zonal average retrieved ozone amounts corrected for the presence of aerosols are within 1% of the uncorrected zonal averages. Individual scan angles can have ozone amount corrections of +/-3%, with a nadir view correction of 2%. [References: 34]
机译:在皮纳图博火山喷发后的18个月内,用Nimbus 7总臭氧测图光谱仪(TOMS)对辐射的扰动来得出平流层气溶胶光学厚度在312.5 nm处的每周纬向平均值和纬向平均值。面积加权或有效半径。该方法在气溶胶散射相位函数的反向散射区域中,使用轨道轨迹两侧的TOMS观测的详细结构。在1991年7月中到1992年12月的大部分时间里,热带地区(北纬25度到南纬25度)获得了气溶胶光学厚度和有效半径的时空变化。最大光学厚度推导值为0.22( +36%/-10%),是在1991年7月底从5度到15度的纬度带获得的。到1992年底,在25度N到25度之间,热带光学深度从0.02到0.06不等S地理区域。得出的光学深度不确定性的主要来源是气溶胶层的高度。推断的有效半径的时间演变清楚地表明了粒径的增加。 1991年7月底,得出的有效半径值约为0.5微米,而在1992年秋季,这些值在0.7至1.4微米之间。对测得的臭氧量进行校正和误差估算。经校正的存在气溶胶的纬向平均臭氧含量在未经校正的纬向平均值的1%以内。各个扫描角度的臭氧量校正值可以为+/- 3%,最低视点校正值为2%。 [参考:34]

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