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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effect of the temperature dependence of gas absorption in climate feedback
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Effect of the temperature dependence of gas absorption in climate feedback

机译:气体的温度依赖性的影响吸收在气候反馈

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摘要

In the context of climate feedback associated with temperature change, there exist two potential mechanisms that affect the outgoing longwave radiation (OLR) and the downward longwave radiation (DLR). One is the “Planck” effect that determines the blackbody thermal emission at a considered temperature. The other is the “absorptivity” effect, in which a temperature change causes a change in gas absorptivities and thus influences the longwave radiative transfer. By using the line-by-line computed radiative Jacobians, which quantify the sensitivity of the radiative fluxes to a perturbation in the atmospheric temperature, the absorptivity effect is separated from the Planck effect. The absorptivity effect is further partitioned into components, with each one having a distinct physical meaning. It is demonstrated that the absorptivity-induced changes in the longwave radiation are individually significant even though the net effect is largely one of cancellation. As a consequence, the Planck effect dominates the overall OLR and DLR sensitivities to temperature change. The absorptivity effect tends to counteract the Planck effect. This tendency is particularly significant for the DLR and is more prominent for a warmer climate, with the result being a reduction in the surface warming.
机译:在气候相关的反馈温度变化,存在两个潜力影响即将离任的长波的机制向下长波辐射(OLR)和辐射(DLR)。决定了黑体热发射的考虑温度。“吸收能力”效应,在这一温度改变导致气体吸收率和改变从而影响长波辐射传输。通过逐行计算辐射雅克比时,量化的敏感性辐射通量的扰动大气温度、吸收能力的效果分开普朗克的效果。吸收率的影响进一步划分组件,每一个不同的物理意义。absorptivity-induced长波的变化辐射分别是重要的尽管净效应在很大程度上是一个取消。主导整个OLR和DLR敏感性温度变化。往往会抵消普朗克的效果。DLR倾向尤为重要气候变暖,更加突出,结果被减少变暖。

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