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首页> 外文期刊>Geophysical Research Letters >Influence of savanna fire on Australian monsoon season precipitation and circulation as simulated using a distributed computing environment
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Influence of savanna fire on Australian monsoon season precipitation and circulation as simulated using a distributed computing environment

机译:使用分布式计算环境模拟的热带稀树大火对澳大利亚季风季节降水和环流的影响

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摘要

Fires in the Australian savanna have been hypothesized to affect monsoon evolution, but the hypothesis is controversial and the effects have not been quantified. A distributed computing approach allows the development of a challenging experimental design that permits simultaneous variation of all fire attributes. The climate model simulations are distributed around multiple independent computer clusters in six countries, an approach that has potential for a range of other large simulation applications in the earth sciences. The experiment clarifies that savanna burning can shape the monsoon through two mechanisms. Boundary-layer circulation and large-scale convergence is intensified monotonically through increasing fire intensity and area burned. However, thresholds of fire timing and area are evident in the consequent influence on monsoon rainfall. In the optimal band of late, high intensity fires with a somewhat limited extent, it is possible for the wet season to be significantly enhanced.
机译:据推测,澳大利亚大草原发生的火灾会影响季风的演变,但这一假设尚有争议,其影响尚未量化。分布式计算方法允许开发具有挑战性的实验设计,该实验设计允许同时改变所有火属性。气候模型模拟分布在六个国家的多个独立计算机集群中,这种方法在地球科学中的其他大型模拟应用中具有潜力。实验表明,稀树草原燃烧可以通过两种机制使季风形成。通过增加火势和燃烧面积,单调加强边界层环流和大规模收敛。但是,火灾的时机和面积的阈值对季风降雨的影响是显而易见的。在后期高强度火灾的最佳范围内(程度有限),可能会明显增加雨季。

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