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Stratospheric water vapour budget and convection overshooting the tropopause: Modelling study from SCOUT-AMMA

机译:平流层水汽收支和对流超过对流层顶:SCOUT-AMMA的模型研究

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The aim of this paper is to study the impacts of overshooting convection at a local scale on the water distribution in the tropical UTLS. Overshooting convection is assumed to be one of the processes controlling the entry of water vapour mixing ratio in the stratosphere by injecting ice crystals above the tropopause which later sublimate and hydrate the lower stratosphere. For this purpose, we quantify the individual impact of two cases of overshooting convection in Africa observed during SCOUT-AMMA: the case of 4 August 2006 over Southern Chad which is likely to have influenced the water vapour measurements by micro-SDLA and FLASH-B from Niamey on 5 August, and the case of a mesoscale convective system over ?yr on 5 August 2006. We make use of high resolution (down to 1 km horizontally) nested grid simulations with the threedimensional regional atmospheric model BRAMS (Brazilian Regional Atmospheric Modelling System). In both cases, BRAMS succeeds in simulating the main features of the convective activity, as well as overshooting convection, though the exact position and time of the overshoots indicated by MSG brightness temperature difference is not fully reproduced (typically 1 displacement in latitude compared with the overshoots indicated by brightness temperature difference from satellite observations for both cases, and several hours shift for the A?r case on 5 August 2006). Total water budgets associated with these two events show a significant injection of ice particles above the tropopause with maxi-mum values of about 3.7 ton s~(-1) for the Chad case (4 August) and 1.4 ton s~(-1) for the A?r case (5 August), and a total upward cross tropopause transport of about 3300 ton h-1 for the Chad case and 2400 ton h-1 for the A?r case in the third domain of simulation. The order of magnitude of these modelled fluxes is lower but comparable with similar studies in other tropical areas based on models. These two estimations exhibit significant differences and highlight variability among the cases of the impact of overshooting convection in hydrating the lower stratosphere. We show that the regional enhancement of water above the tropopause is between 0.21 to 0.67 ppmv between 380 and 400 K, generally in the range of other model estimations. The amount of water which remains in the stratosphere after the overshoot is estimated for both cases. A range of 330 to 507 tons is found for the Chad case and an upper limit of 200 tons is found for the ?ir case. Finally we emphasize that the hydrated area in the LS by overshooting convection can be advected relatively far away from the overshoot initial location, with locally mixing ratios of more than 3 ppmv higher than the background level, which is compatible with the balloon borne measurements performed above Niamey in the same air mass, 30 h after the overshoot.
机译:本文的目的是研究局部超调对流对热带UTLS中水分布的影响。过冲对流被认为是通过在对流层顶上方注入冰晶来控制平流层中水汽混合比进入的过程之一,随后将冰晶升华并水合到低平流层中。为此,我们量化了在SCOUT-AMMA期间观察到的非洲对流超调的两个案例的个人影响:2006年8月4日在乍得南部的案例,该案例可能已影响了微型SDLA和FLASH-B的水蒸气测量于8月5日从尼亚美发射,2006年8月5日有一个中尺度的对流系统。我们利用高分辨率(水平向下1 km)的嵌套网格模拟和三维区域大气模型BRAMS(巴西区域大气模型)系统)。在这两种情况下,BRAMS都成功地模拟了对流活动和超调对流的主要特征,尽管并未完全再现MSG亮度温度差所指示的超调的确切位置和时间(通常,纬向位移为1个位移)。两种情况下,卫星观测到的亮度温度差指示了过冲,而2006年8月5日Arr情况则偏移了几个小时)。与这两个事件相关的总水预算显示,在对流层顶上方大量注入了冰粒,乍得案例(8月4日)的最大值约为3.7吨s〜(-1),1.4吨s〜(-1)的最大值(3月5日),在模拟的第三个领域中,乍得一案的对流层顶顶总输送量约为3300吨h-1,A?r案为2400吨h-1。这些模拟通量的数量级较低,但与基于模型的其他热带地区的类似研究相当。这两个估计值显示出明显的差异,并突出了在对平流层下层进行水化时过冲对流的影响。我们表明,对流层顶上方水的区域增强作用在380至400 K之间介于0.21至0.67 ppmv之间,通常在其他模型估计范围内。两种情况都估计出超调后平流层中剩余的水量。乍得案发现量为330至507吨,而装箱案的上限为200吨。最后,我们强调,通过超调对流可以使LS中的水化区域相对于超调初始位置平移,局部混合比比背景水平高3 ppmv以上,这与上面进行的气球测量结果兼容过冲后30小时,在相同的空气质量下的尼亚美。

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