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Potential impact of subsonic and supersonic aircraft exhaust on water vapor in the lower stratosphere assessed via a trajectory model

机译:通过轨迹模型评估亚音速和超音速飞机尾气对平流层下部水汽的潜在影响

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摘要

We employ a trajectory model to assess the impact on the stratosphere of water vapor present in the exhaust of subsonic and a proposed fleet of supersonic aircraft. Air parcels into which water vapor from aircraft exhaust has been injected are run through a 6-year simulation in the trajectory model using meteorological data from the UKMO analyses with emissions dictated by the standard 2015 emissions scenario. For the subsonic aircraft, our results suggest maximum enhancements of ~150 ppbv just above the Northern Hemisphere tropopause and of much less than 50 ppbv in most other regions. Inserting the perturbed water vapor profiles into a radiative transfer model, but not considering the impact of additional cirrus formation resulting from emissions by subsonic aircraft, we find that the impact of subsonic water vapor emissions on the radiative balance is negligible. For the supersonic case, our results show maximum enhancements of ~1.5 ppmv in the tropical stratosphere near 20 km. Much of the remaining stratosphere between 12 and 25 km sees enhancements of greater than 0.1 ppmv, although enhancements above 35 km are generally less than 50 ppbv, in contrast to previous 2-D and 3-D model studies. Radiative calculations based upon these projected water vapor perturbations indicate they may cause a nonnegligible impact on tropical temperature profiles. Since our trajectory model includes no chemistry and our radiative calculations use the most extreme water vapor perturbations, our results should be viewed as upper limits on the potential impacts.
机译:我们采用轨迹模型来评估亚音速飞机和拟议的超音速飞机机群尾气中水蒸气对平流层的影响。使用UKMO分析得出的气象数据,并根据2015年标准排放情景确定的排放量,在航迹模型中进行了为期6年的模拟,对注入了飞机废气中的水蒸气的包裹进行了模拟。对于亚音速飞机,我们的结果表明,正好在北半球对流层顶上方最大增加了约150 ppbv,而在其他大多数地区则大大低于50 ppbv。将扰动的水蒸气廓线插入到辐射传递模型中,但不考虑亚音速飞机排放引起的额外卷云形成的影响,我们发现亚音速水蒸气排放对辐射平衡的影响可以忽略不计。对于超音速情况,我们的结果表明,在20 km附近的热带平流层中,最大增强幅度约为1.5 ppmv。与之前的2-D和3-D模型研究相比,尽管在35 km以上的增强通常小于50 ppbv,但在12至25 km之间的其余平流层中,大部分增强都大于0.1 ppmv。根据这些预计的水汽扰动进行的辐射计算表明,它们可能对热带温度曲线造成不可忽略的影响。由于我们的轨迹模型不包含化学物质,并且我们的辐射计算使用的是最极端的水蒸气扰动,因此我们的结果应被视为潜在影响的上限。

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