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How warmer and drier will the Mediterranean region be at the end of the twenty-first century?

机译:地中海地区在二十一世纪末时如何温暖和干燥?

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Nearly all regions in the world are projected to become dryer in a warming climate. Here, we investigate the Mediterranean region, often referred to as a climate change "hot spot". From regional climate simulations, it is shown that although enhanced warming and drying over land is projected, the spatial pattern displays high variability. Indeed, drying is largely caused by enhanced warming over land. However, in Northern Europe, soil moisture alleviates warming induced drying by up to 50% due to humidity uptake from land. In already arid regions, the Mediterranean Sea is generally the only humidity source, and drying is only due to land warming. However, over Sahara and the Iberian Peninsula, enhanced warming over land is insufficient to explain the extreme drying. These regions are also isolated from humidity advection by heat lows, which are cyclonic circulation anomalies associated with surface heating over land. The cyclonic circulation scales with the temperature gradient between land and ocean which increases with climate change, reinforcing the cyclonic circulation over Sahara and the Iberian Peninsula, both diverting the zonal advection of humidity to the south of the Iberian Peninsula. The dynamics are therefore key in the warming and drying of the Mediterranean region, with extreme aridification over the Sahara and Iberian Peninsula. In these regions, the risk for human health due to the thermal load which accounts for air temperature and humidity is therefore projected to increase significantly with climate change at a level of extreme danger.
机译:几乎所有地区都会投射到温暖的气候中成为烘干机。在这里,我们调查地中海地区,通常被称为气候变化“热点”。从区域气候模拟,表明,虽然投射了在土地上增强的升温和干燥,但空间模式显示出高的变化。实际上,干燥主要是通过增强陆地的变暖引起的。然而,在北欧,由于湿度从陆地吸收,土壤水分减轻了诱导的诱导干燥诱导的致干续。在已经干旱的地区,地中海通常是唯一湿度的源泉,而且休眠只是由于陆地变暖。然而,在撒哈拉和伊比利亚半岛,在土地上增强暖温不足以解释极端干燥。这些区域也被热量低于湿度平流分离,这是与陆上表面加热相关的旋风循环异常。循环循环尺度与陆地和海洋之间的温度梯度,随着气候变化增加,加强撒哈拉和伊比利亚半岛的旋风循环,都将湿度的湿度转移到伊比利亚半岛南部。因此,动态是地中海地区的热化和干燥的关键,极度地造成了撒哈拉和伊比利亚半岛。在这些区域中,由于对空气温度和湿度的热负荷导致的人类健康风险被预测,气候变化在极度危险程度上显着增加。

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