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Earth’s outgoing longwave radiation linear due to H2O greenhouse effect

机译:由于H2O温室效应地球向外发出的长波辐射呈线性

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摘要

Satellite measurements and radiative calculations show that Earth’s outgoing longwave radiation (OLR) is an essentially linear function of surface temperature over a wide range of temperatures ( ≳ 60 K). Linearity implies that radiative forcing has the same impact in warmer as in colder climates and is thus of fundamental importance for understanding past and future climate change. Although the evidence for a nearly linear relation was first pointed out more than 50 y ago, it is still unclear why this relation is valid and when it breaks down. Here we present a simple semianalytical model that explains Earth’s linear OLR as an emergent property of an atmosphere whose greenhouse effect is dominated by a condensable gas. Linearity arises from a competition between the surface’s increasing thermal emission and the narrowing of spectral window regions with warming and breaks down at high temperatures once continuum absorption cuts off spectral windows. Our model provides a way of understanding the longwave contribution to Earth’s climate sensitivity and suggests that extrasolar planets with other condensable greenhouse gases could have climate dynamics similar to Earth’s.
机译:卫星测量和辐射计算表明,地球的长波辐射(OLR)是在很宽的温度范围(≳60 K)内表面温度的线性函数。线性表明,辐射强迫对气候变暖和气候变冷的影响相同,因此对于理解过去和未来的气候变化至关重要。尽管早在50多年前就指出了一种近似线性关系的证据,但仍不清楚该关系为何有效以及何时破裂。在这里,我们提供了一个简单的半分析模型,该模型将地球的线性OLR解释为一种大气的新兴属性,该大气的温室效应主要由可冷凝气体控制。线性的产生是由于表面热量的增加与光谱窗口区域随温度变窄之间的竞争而引起的,一旦连续吸收吸收了光谱窗口,该温度就会在高温下分解。我们的模型提供了一种理解长波对地球气候敏感性的贡献的方式,并暗示太阳外行星和其他可冷凝温室气体的气候动态可能与地球相似。

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