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Persistent polar ocean warming in a strategically geoengineered climate

机译:持续的极地海洋在战略性地耕地气候中变暖

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Enhancement of the Earth's albedo through the injection of sulfate aerosols into the stratosphere has been proposed as an approach to offset some of the adverse effects of climate change. Here we analyse an ensemble of simulations of the twenty-first century climate designed to explore a strategic geoengineering approach. Specifically, stratospheric sulfur injections are imposed at 15 degrees and 30 degrees in both hemispheres with the aim to minimize the changes in surface temperature, both in the global mean and in its gradients between hemispheres and from equator to pole. The approach accomplishes these goals and reduces previously noted adverse impacts of solar radiation management, such as excessive cooling in the tropics and weakening rainfall over land. Nonetheless, hydrological responses over the North Atlantic Ocean lead to an acceleration of the Atlantic meridional overturning circulation and to continued warming of the deep and polar oceans, particularly in the vicinity of southern Greenland. These changes could cause continued, albeit slower, cryospheric melt and global sea level rise. Our simulations demonstrate the complexity of the coupled climate response to geoengineering and highlight the need for significant advances in our ability to simulate the coupled climate system and the continued refinement of geoengineering strategies as a prerequisite to their successful implementation.
机译:已经提出了通过注射硫酸盐气溶胶进入平流层的地球玻璃玻璃作为抵消气候变化的一些不利影响的方法。在这里,我们分析了二十一世纪气候模拟的集合,旨在探索战略地理工程方法。具体地,在两个半球中,平坦硫酸硫注入施加在15度和30度,目的是最小化表面温度的变化,在全局平均值和其在半球之间的梯度和从赤道到极之间的梯度。该方法实现了这些目标,并减少了先前指出的太阳辐射管理的不利影响,例如在热带地区过度冷却,降雨量减弱。尽管如此,北大西洋的水文反应导致大西洋经济倾斜流通的加速,并继续加热深层海洋,特别是在格陵兰南部附近。这些变化可能导致持续,尽管较慢,低铁熔体和全球海平面上升。我们的模拟表明,耦合气候响应对地理工程的复杂性,并突出了我们模拟耦合气候系统的能力的重要进步以及持续改进的地理工程战略作为其成功实施的先决条件。

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