首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Global responses of terrestrial productivity to contemporary climatic oscillations
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Global responses of terrestrial productivity to contemporary climatic oscillations

机译:地球生产力对当代气候波动的全球响应

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摘要

The terrestrial biosphere is subjected to a wide range of natural climatic oscillations. Best known is the El Ni?o–southern oscillation (ENSO) that exerts globally extensive impacts on crops and natural vegetation. A 50-year time series of ENSO events has been analysed to determine those geographical areas that are reliably impacted by ENSO events. Most areas are impacted by changes in precipitation; however, the Pacific Northwest is warmed by El Ni?o events. Vegetation gross primary production (GPP) has been simulated for these areas, and tests well against independent satellite observations of the normalized difference vegetation index. Analyses of selected geographical areas indicate that changes in GPP often lead to significant changes in ecosystem structure and dynamics. The Pacific decadal oscillation (PDO) is another climatic oscillation that originates from the Pacific and exerts global impacts that are rather similar to ENSO events. However, the longer period of the PDO provided two phases in the time series with a cool phase from 1951 to 1976 and a warm phase from 1977 to 2002. It was notable that the cool phase of the PDO acted additively with cool ENSO phases to exacerbate drought in the earlier period for the southwest USA. By contrast in India, the cool phase of the PDO appears to reduce the negative impacts of warm ENSO events on crop production.
机译:陆地生物圈受到各种自然气候振荡的影响。最著名的是厄尔尼诺-南极振荡(ENSO),它对农作物和自然植被产生了全球性的广泛影响。对ENSO事件的50年时间序列进行了分析,以确定那些受到ENSO事件可靠影响的地理区域。大多数地区受到降水变化的影响;然而,西北太平洋地区因厄尔尼诺事件而变暖。已经为这些地区模拟了植被的初级生产总值(GPP),并针对标准化差异植被指数的独立卫星观测进行了很好的测试。对选定地理区域的分析表明,GPP的变化通常会导致生态系统结构和动力学的重大变化。太平洋年代际振荡(PDO)是另一种源自太平洋的气候振荡,其产生的全球影响与ENSO事件十分相似。但是,PDO的较长时间提供了时间序列中的两个阶段,从1951年至1976年为冷相,从1977年至2002年为暖相。值得注意的是,PDO的冷相与ENSO的冷相加重了作用。美国西南部早期干旱。相比之下,在印度,PDO的凉爽期似乎减少了ENSO温暖事件对作物生产的负面影响。

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