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首页> 外文期刊>Environmental Science & Technology Letters >Reducing Uncertainty in Contrail Radiative Forcing Resulting from Uncertainty in Ice Crystal Properties
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Reducing Uncertainty in Contrail Radiative Forcing Resulting from Uncertainty in Ice Crystal Properties

机译:在冰晶特性的不确定性中减少剪辑辐射强迫的不确定性

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摘要

The radiative forcing resulting from condensation clouds behind aircraft ("contrails") has been estimated to have an effect on the same order of magnitude as all accumulated aviation-attributable CO2. However, contrail impacts are highly uncertain, with estimates of total contrail-driven forcing made in the past five years varying by a factor of 4. Two of the key driving uncertainties are the crystal shape and size, which describe the cloud optical properties. Here we combine data from high-fidelity scattering simulations of single crystals with in situ measurement of bulk contrail ice properties to bound the range of realistic optical properties for contrail ice. Accounting for the full range of measured contrail microphysical evolution pathways, and for a given estimate of contrail coverage, we find that the global net radiative forcing due to contrails in 2015 is between 8.6 and 10.7 mW/m(2). Relative to the midpoint, this uncertainty range is less than one-quarter of that recently reported in the literature. This reduction in uncertainty is primarily due to the elimination of spheres as a plausible long-term shape for contrail ice, leaving questions of contrail coverage and optical depth as the primary causes of contrail forcing uncertainty.
机译:据估计飞机背后的冷凝云导致的辐射迫使迫使抗凝云与所有累积的航空归因于所有累积的航空归因于所有累积二氧化碳有相同的数量级。然而,凝结盲的影响是非常不确定的,估计过去五年中的总凝结导向的强迫率不同,因此两个关键的驾驶不确定性是晶体形状和尺寸,这描述了云光学性质。在这里,我们将来自单晶的高保真散射模拟的数据与原位测量的散块凝固性冰属性相结合,以绑定互联冰的现实光学特性范围。占全系列测量的Contreail微微物理演进途径,以及给定的对手覆盖率的估计,我们发现2015年互联网的全球净辐射强制介于8.6和10.7 MW / m(2)之间。相对于中点,这种不确定性范围不到最近在文献中报告的四分之一。这种不确定性的减少主要是由于消除球体作为互相凝固的合理的长期形状,将绑定覆盖率和光学深度的问题作为歹徒迫使不确定性的主要原因。

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