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Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum

机译:在末次冰期最大值期间模拟热带气候和西太平洋海表温度的影响

摘要

Changes in tropical atmospheric heat and circulation patterns, as well as the effects of sea surface temperature (SST) of the western Pacific during the Last Glacial Maximum (LGM), have been investigated using a climate model and the LGM SST compiled by Wang [1999] . The annual mean LGM SST was 2°–4°C lower than the present day in the tropical western Pacific west of 140°E. Simulations show that the largest decrease of atmospheric heat occurs in the tropics in a region stretching from the Bay of Bengal to the central Pacific Ocean, while there are no significant changes in atmospheric heat at higher latitudes. This indicates that the atmospheric heat in the tropics shows a stronger response to boundary changes between the LGM and the present day than it does at higher latitudes, since the tropical convection amplifies the response of the atmosphere in the former case. Because of this tropical heat change, the Walker circulation, the transverse monsoon, and the east Asian summer monsoon at the LGM were weaker than they are at present. The model with the Wang [1999] LGM SST simulated large changes in atmospheric circulation in the tropics and high northern latitudes compared to the Climate, Long-Range Investigation, Mapping and Prediction (CLIMAP) [ CLIMAP Project Members, 1981 ] project's reconstruction. The Wang [1999] LGM SST was also associated with a lower surface air temperature (SAT) at high northern latitudes and the Arctic and with a cooler temperature of the coldest month in Europe. The annual mean SAT decreased by 2°C in the Arctic, and the winter mean SAT decreased by 4°C in Europe.
机译:使用气候模型和Wang [1999]编制的LGM SST,研究了热带大气热和循环模式的变化,以及末次冰盛期(LGM)期间西太平洋海表温度(SST)的影响。 ]。在140°E以西的热带西太平洋,年平均LGM SST比今天低2°–4°C。模拟表明,从孟加拉湾一直延伸到太平洋中部的热带地区,大气热量的最大减少发生在热带地区,而在高纬度地区,大气热量没有明显变化。这表明,热带地区的对流对LGM和今天的边界变化表现出比高纬度更高的响应,因为在前一种情况下,热带对流会放大大气的响应。由于这种热带热变化,LGM的沃克环流,横向季风和东亚夏季风比现在弱。 Wang [1999] LGM SST模型与气候,远程调查,制图和预测(CLIMAP)[CLIMAP项目成员,1981]项目的重建相比,模拟了热带和北部高纬度地区大气环流的大变化。 Wang [1999] LGM SST还与北部高纬度地区和北极的地表温度较低(SAT)有关,并且与欧洲最冷月份的温度较低有关。北极的年平均SAT下降了2°C,而欧洲的冬季平均SAT下降了4°C。

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