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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Distinct Influences of Land Cover and Land Management on Seasonal Climate
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Distinct Influences of Land Cover and Land Management on Seasonal Climate

机译:不同的土地覆盖和土地的影响管理季节性气候

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Anthropogenic land use and land cover change is primarily represented in climate model simulations through prescribed transitions from natural vegetation to cropland or pasture. However, recent studies have demonstrated that land management practices, especially irrigation, have distinct climate impacts. Here we disentangle the seasonal climate impacts of land cover change and irrigation across areas of high agricultural intensity using climate simulations with three different land surface scenarios: (1) natural vegetation cover/no irrigation, (2) year 2000 crop cover/no irrigation, and (3) year 2000 crop cover and irrigation rates. We find that irrigation substantially amplifies land cover-induced climate impacts but has opposing effects across certain regions. Irrigation mostly causes surface cooling, which substantially amplifies land cover change-induced cooling in most regions except over Central, West, and South Asia, where it reverses land cover change-induced warming. Despite increases in net surface radiation in some regions, this cooling is associated with enhancement of latent relative to sensible heat fluxes by irrigation. Similarly, irrigation substantially enhances the wetting influence of land cover change over several regions including West Asia and the Mediterranean. The most notable contrasting impacts of these forcings on precipitation occur over South Asia, where irrigation offsets the wetting influence of land cover during the monsoon season. Differential changes in regional circulations and moist static energy induced by these forcings contribute to their precipitation impacts and are associated with differential changes in surface and tropospheric temperature gradients and moisture availability. These results emphasize the importance of including irrigation forcing to evaluate the combined impacts of land surface changes for attributing historical climatic changes and managing future impacts.
机译:人为土地利用和土地覆盖变化主要表现在气候模型模拟通过规定的过渡自然植被农田和牧场。然而,最近的研究表明土地管理实践,特别是灌溉,具有不同的气候影响。解决季节性气候影响的土地跨地区的高覆盖变化和灌溉农业使用气候模拟强度三个不同的地表场景:(1)自然植被/不灌溉,(2)2000年作物覆盖/不灌溉,(3)2000年作物覆盖和灌溉。灌溉显著放大的土地cover-induced气候影响,但反对在某些地区的影响。会导致表面冷却,从而大大增强土地覆盖改变引发的冷却大部分地区,除了在中部,西部和南部亚洲,逆转土地覆盖改变引发的变暖。在一些地区,辐射冷却与增强相关联的潜在的相对显热通量的灌溉。灌溉大大增强了润湿土地覆盖变化数的影响包括西亚地区地中海。这些作用力对降水的影响在南亚,灌溉补偿润湿期间土地覆盖的影响季风季节。发行量和潮湿的静态能量引起的这些作用力导致他们的降水影响和与微分相关联表面和对流层温度的变化水分梯度和可用性。结果强调其中的重要性灌溉迫使评价的总和将地表变化的影响历史气候变化和管理的未来影响。

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