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Thermodynamic and dynamic responses of the hydrological cycle to solar dimming

机译:水文循环对太阳调光的热力学和动态响应

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摘要

The fundamental role of the hydrological cycle in the global climate system motivates a thorough evaluation of its responses to climate change and mitigation. The Geoengineering Model Intercomparison Project (GeoMIP) is a coordinated international effort to assess the climate impacts of solar geoengineering, a proposal to counteract global warming with a reduction in incoming solar radiation. We assess the mechanisms underlying the rainfall response to a simplified simulation of such solar dimming (G1) in the suite of GeoMIP models and identify robust features. While solar geoengineering nearly restores preindustrial temperatures, the global hydrology is altered. Tropical precipitation changes dominate the response across the model suite, and these are driven primarily by shifts of the Hadley circulation cells. We report a damping of the seasonal migration of the Intertropical Convergence Zone (ITCZ) in G1, associated with preferential cooling of the summer hemisphere, and annual mean ITCZ shifts in some models that are correlated with the warming of one hemisphere relative to the other. Dynamical changes better explain the varying tropical rainfall anomalies between models than changes in relative humidity or the Clausius–Clapeyron scaling of precipitation minus evaporation (P???E), given that the relative humidity and temperature responses are robust across the suite. Strong reductions in relative humidity over vegetated land regions are likely related to the CO2 physiological response in plants. The uncertainty in the spatial distribution of tropical P???E changes highlights the need for cautious consideration and continued study before any implementation of solar geoengineering.
机译:水文循环在全球气候系统中的基本作用激励了对气候变化和缓解的反应的彻底评估。 Geoengineed Model Interpadion项目(GeoMip)是一项协调的国际努力,以评估太阳能地理工程的气候影响,这项建议抵消了全球变暖,减少了传入的太阳辐射。我们在GeoMip模型套件中评估降雨响应的降雨响应的简化模拟,并识别鲁棒特征。虽然太阳能地理工程几乎恢复了预工业温度,但全局水文被改变。热带降水改变在模型套件上占据了响应,这些响应主要是通过Hadley循环细胞的偏移驱动。我们报告了G1中的闭路会聚区(ITCZ)的季节性迁移的阻尼,与夏半球优先冷却相关,并且年平均ITCZ在一些模型中换乘,其与一个半球相对于另一个半球的加热相关。动态变化更好地解释了模型之间的不同热带降雨异常,而不是相对湿度的变化或沉淀减去沉淀减去蒸发(P ??? e),鉴于相对湿度和温度响应在套件上稳健。在植物陆地区相对湿度的相对湿度的强不断减少可能与植物中的CO2生理反应有关。热带P的空间分布的不确定性突显了在任何实施太阳能地理工程之前谨慎考虑和持续研究的必要性。

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