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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Anti-phased response of northern and southern East Asian summer precipitation to ENSO modulation of orbital forcing
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Anti-phased response of northern and southern East Asian summer precipitation to ENSO modulation of orbital forcing

机译:东亚北部和南部夏季降水对ENSO调制轨道强迫的反相位响应

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摘要

The timing of orbital-scale Asian monsoon changes, as a direct response of northern summer insolation or remarkably lagged by southern insolation, is still unclear. In particular, various monsoon records obtained in the East Asian monsoon region show distinct phase relationships, indicating additional forcing/feedback mechanisms. Here, monsoon proxies covering the past several precession cycles, either from cave stalagmites or from land/ocean deposits, are first reviewed to present the nearly inverse precipitation responses to the precession forcing between southern and northern East Asia. Modern meteorological observations show that, different modes of tropical Pacific sea surface temperature (SST) could lead to an out-of-phase interannual change in the East Asian summer precipitation. This ENSO influence is also found in the precession scale monsoon variability from the long-term transient modeling, which can explain the phase differences among monsoon proxies. At precession maxima, the East Asian summer monsoon strengthens, causing more precipitation in the north and less precipitation in the south. The SST-precipitation teleconnection is closely associated with a high pressure anomaly due to surface cooling over northwestern Pacific. Therefore, the timing of Asian paleo-monsoon might be significantly influenced by the "internal" ocean feedbacks and one can not expect all the monsoon proxies are consistently responded to the "external" insolation forcing. Ltd.
机译:目前尚不清楚亚洲北部季风发生轨道规模变化的时间,这是北半球夏季日照的直接反应,还是南半球日照的明显滞后。特别是,在东亚季风区获得的各种季风记录显示出明显的相位关系,表明了其他强迫/反馈机制。在这里,首先回顾了涵盖洞穴石笋或陆地/海洋沉积物的过去数次进动周期的季风代理,以显示对东亚南部和北部之间进动强迫的几乎相反的降水响应。现代气象观测表明,热带太平洋海表温度(SST)的不同模式可能导致东亚夏季降水的反相位年际变化。长期的瞬态模型还可以从进动尺度季风变化中发现这种ENSO影响,这可以解释季风代理之间的相位差异。在进动最大值时,东亚夏季风增强,导致北部降水增加,而南部降水减少。由于西北太平洋上空的表面冷却,SST降水遥相关与高压异常密切相关。因此,亚洲古季风的时机可能受到“内部”海洋反馈的显着影响,并且不能指望所有季风代理都能对“外部”日照强迫持续做出反应。有限公司

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