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Earth’s changing global atmospheric energy cycle in response to climate change

机译:地球响应气候变化而变化的全球大气能量循环

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The Lorenz energy cycle is widely used to investigate atmospheres and climates on planets. However, the long-term temporal variations of such an energy cycle have not yet been explored. Here we use three independent meteorological data sets from the modern satellite era, to examine the temporal characteristics of the Lorenz energy cycle of Earth’s global atmosphere in response to climate change. The total mechanical energy of the global atmosphere basically remains constant with time, but the global-average eddy energies show significant positive trends. The spatial investigations suggest that these positive trends are concentrated in the Southern Hemisphere. Significant positive trends are also found in the conversion, generation and dissipation rates of energies. The positive trends in the dissipation rates of kinetic energies suggest that the efficiency of the global atmosphere as a heat engine increased during the modern satellite era.
机译:洛伦兹能量循环被广泛用于研究行星的大气和气候。然而,尚未探索这种能量循环的长期时间变化。在这里,我们使用来自现代卫星时代的三个独立的气象数据集,来检验响应气候变化的地球全球大气的洛伦兹能量循环的时间特征。全球大气的总机械能基本上随时间保持不变,但全球平均涡能显示出显着的正趋势。空间调查表明,这些积极趋势集中在南半球。在能量的转换,产生和耗散率中也发现了显着的积极趋势。动能耗散率的积极趋势表明,在现代卫星时代,全球大气作为热机的效率有所提高。

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