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Lidar-observed enhancement of aerosols in the upper troposphere and lower stratosphere over the Tibetan Plateau induced by the Nabro volcano eruption

机译:纳布罗火山喷发导致青藏高原对流层和平流层下层气溶胶的激光雷达观测增强

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Vertical profiles of aerosol extinction coefficients were measured by a micro-pulse lidar at Naqu (31.5 degrees N, 92.1 degrees E; 4508 ma.m.s.l.), a meteorological station located on the central part of the Tibetan Plateau during summer 2011. Observations show a persistent maximum in aerosol extinction coefficients in the upper troposphere-lower stratosphere (UTLS). These aerosol layers were generally located at an altitude of 18-19 km a.m.s.l., 1-2 km higher than the tropopause, with broad layer depth ranging approximately 3-4 km and scattering ratio of 4-9. Daily averaged aerosol optical depths (AODs) of the enhanced aerosol layers in UTLS over the Tibetan Plateau varied from 0.007 to 0.030, in agreement with globally averaged levels of 0.018 +/- 0.009 at 532 nm from previous observations, but the percentage contributions of the enhanced aerosol layers to the total AOD over the Tibetan Plateau are higher than those observed elsewhere. The aerosol layers in UTLS wore off gradually with the reducing intensity of the Asian monsoon over the Tibetan Plateau at the end of August. The eruption of Nabro volcano on 13 June 2011 is considered an important factor to explain the enhancement of tropopause aerosols observed this summer over the Tibetan Plateau.
机译:通过微脉冲激光雷达在那曲(北纬31.5度,东经92.1度; 4508 ma.msl)(2011年夏季位于青藏高原中部的一个气象站)测量了气溶胶消光系数的垂直剖面。对流层-平流层下部(UTLS)的气溶胶消光系数持续最大。这些气溶胶层通常位于海拔18-19 km a.m.s.l.,比对流层顶高1-2 km,宽层深度约为3-4 km,散射比为4-9。青藏高原UTLS增强气溶胶层的日平均气溶胶光学深度(AOD)在0.007到0.030之间变化,与先前观测的532 nm的全球平均水平0.018 +/- 0.009一致,但是青藏高原上空的总AOD气溶胶层数高于其他地方。随着8月底青藏高原上亚洲季风强度的减弱,UTLS中的气溶胶层逐渐消失。 2011年6月13日纳布罗火山的喷发被认为是解释今年夏季青藏高原对流层顶气溶胶增强的重要因素。

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