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The status of the Indo-Pacific Warm Pool and adjacent land at the Last Glacial Maximum

机译:The status of the Indo-pacific Warm pool and adjacent land at the Last Glacial maximum

摘要

Since the Climate: Long Range Investigation, Mapping and Prediction (CLIMAP) reconstructions for the Earth at the Last Glacial Maximum (LGM), there have been conflicting views on the extent of cooling of the oceans of tropical Australasia-here, referred to as the Indo-Pacific Warm Pool-in contrast with those temperatures registered on land. Based on sea-surface temperature (= SST) reconstructions for the Indo-Pacific Warm Pool, and on vegetation reconstruction for SE Asia as well as by considering the increase of land mass area engendered during low sea levels, we identify for the LGM a significant drop in precipitation in the Warm Pool region that would explain an increase in salinity while SST decreased by about 2 degreesC at the most. The latter would have caused a substantial decrease of large-scale atmospheric convection over the Indo-Pacific Warm Pool and suppressed deep atmospheric convection that would help maintain somewhat elevated SSTs. The drier atmosphere and diminished level of cloud cover would also have reduced nocturnal temperatures at elevation in the region and produced a steeper mean atmospheric lapse rate, forcing the tree line to drop and glaciers to be maintained down to much lower altitudes than today. (C) 2002 Elsevier Science B.V. All rights reserved.
机译:自“气候:对末次冰河极大期(LGM)的地球进行的远程调查,制图和预测(CLIMAP)重建”以来,关于热带大洋洲海洋降温程度的观点存在分歧。印度太平洋暖池-与陆地上记录的温度相反。基于印度洋-太平洋暖池的海表温度(= SST)重建,以及东南亚的植被重建,并考虑到低海平面造成的陆地面积增加,我们认为LGM是重要的暖池区降水的下降说明盐度增加,而SST最多下降了约2摄氏度。后者将导致印度太平洋太平洋暖池的大规模大气对流大大减少,并抑制深层大气对流,这将有助于维持较高的海温。较干燥的大气层和云层的减少也将降低该地区海拔高度的夜间温度,并产生更陡峭的平均大气流失率,迫使林木线下降,冰川被维持在比今天低得多的高度。 (C)2002 Elsevier Science B.V.保留所有权利。

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