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18O depletion in monsoon rain relates to large scale organized convection rather than the amount of rainfall

机译:季风雨中18 O的减少与大规模的有组织对流有关而不与降雨量有关

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摘要

Oxygen isotopic variations in rainfall proxies such as tree rings and cave calcites from South and East Asia have been used to reconstruct past monsoon variability, mainly through the amount effect: the observed 18O depletion of rain with increasing amount, manifested as a negative correlation of the monthly amount of tropical rain with its δ18O, both measured at the same station. This relation exhibits a significant spatial variability, and at some sites (especially North-East and peninsular India), the rainfall proxies are not interpretable by this effect. We show here that relatively higher 18O-depletion in monsoon rain is not related necessarily to its amount, but rather, to large scale organized convection. Presenting δ18O analyses of ~654 samples of daily rain collected during summer 2012 across 9 stations in Kerala, southern India, we demonstrate that although the cross correlations between the amounts of rainfall in different stations is insignificant, the δ18O values of rain exhibit highly coherent variations (significant at P = 0.05). Significantly more 18O-depletion in the rain is caused by clouds only during events with a large spatial extent of clouds observable over in the south eastern Arabian Sea.
机译:来自南亚和东亚的树木年轮和洞穴方解石等降雨代理中的氧同位素变化已被用来重建过去的季风变化,主要是通过量效应:观察到的 18 O消耗量随着雨量的增加而增加,表现为每月热带雨量与其δ 18 O的负相关,两者均在同一站测得。这种关系表现出显着的空间变异性,在某些地点(尤其是印度东北部和印度半岛),不能用这种效应来解释降雨代理。我们在这里表明,季风雨中相对较高的 18 O损耗不一定与其数量有关,而与大规模的有组织对流有关。通过对印度南部喀拉拉邦9个站点2012年夏季采集的约654个每日降雨样本进行δ 18 O分析,我们证明了尽管不同站点的降雨量之间的相互关系不显着,雨水的δ 18 O值表现出高度连贯的变化(P = 0.05时具有显着性)。雨中的 18 O损耗明显更多是由云引起的,仅在阿拉伯东南部东南部观察到较大范围的云事件时才由云引起。

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