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Humidity trends imply increased sensitivity to clouds in a warming Arctic

机译:湿度趋势意味着在变暖的北极地区对云的敏感性增加

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Infrared radiative processes are implicated in Arctic warming and sea-ice decline. The infrared cloud radiative effect (CRE) at the surface is modulated by cloud properties; however, CRE also depends on humidity because clouds emit at wavelengths that are semi-transparent to greenhouse gases, most notably water vapour. Here we show how temperature and humidity control CRE through competing influences between the mid-and far-infrared. At constant relative humidity, CRE does not decrease with increasing temperature/absolute humidity as expected, but rather is found to be approximately constant for temperatures characteristic of the Arctic. This stability is disrupted if relative humidity varies. Our findings explain observed seasonal and regional variability in Arctic CRE of order 10Wm(-2). With the physical properties of Arctic clouds held constant, we calculate recent increases in CRE of 1-5Wm(-2) in autumn and winter, which are projected to reach 5-15Wm(-2) by 2050, implying increased sensitivity of the surface to clouds.
机译:红外辐射过程与北极变暖和海冰减少有关。表面的红外云辐射效应(CRE)受云的性质调节;但是,CRE也取决于湿度,因为云的发射波长对温室气体(最明显的是水蒸气)是半透明的。在这里,我们展示了温度和湿度如何通过中红外和远红外之间的竞争影响来控制CRE。在恒定的相对湿度下,CRE不会像预期的那样随着温度/绝对湿度的增加而降低,但是发现对于北极的温度特性,CRE近似恒定。如果相对湿度发生变化,则会破坏该稳定性。我们的发现解释了北极CRE中观测到的10Wm(-2)级的季节性和区域变化。在北极云的物理特性保持不变的情况下,我们计算出秋冬季的CRE最近增加了1-5Wm(-2),预计到2050年将达到5-15Wm(-2),这意味着表面敏感性增加到云。

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