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Simulations of LGM climate of East Asia by regional climate model

机译:东亚LGM气候的区域气候模式模拟。

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Climate conditions in the Last Glacial Maximum (LGM) were remarkably different from the present ones. Adopting a regional climate model (RCM) which has included a detailed land surface scheme, LGM climate of East Asia has been simulated. The effects of vegetation changes on LGM climate have been diagnosed by adding forces of LGM paleovegetation reconstructed from the geological records. The results of the simulations by RCM indicate that large decreases in whole year temperature of East Asia continent caused strongly enhanced winter monsoon and weakened summer monsoon. The strengthening and westward-stretching of the Subtropical High of West-Pacific are the key reasons of decreases of LGM summer precipitation in eastern China. Precipitation and effective precipitation were increased in the Tibetan Plateau and Middle-Asia, while the humid condition in the Tibetan Plateau was mainly caused by increase of precipitation. Accumulated snow of LGM was also increased in the Tibetan Plateau, which was helpful to developing glacier and permafrost. This experiment has simulated that the frozen soil areas extend southward to 30° N. In LGM climate simulation, climate effects caused by external forces were amplified by added paleovegetation, therefore, decreases of temperature, changes of precipitation and snowfall, and other climatic parameters were further strengthened, making the simulation results more approach to geological evidences.
机译:最后冰川期(LGM)的气候条件与当前的气候条件明显不同。采用包括详细土地表方案的区域气候模型(RCM),对东亚的LGM气候进行了模拟。通过增加从地质记录中重建的LGM古植被的作用力,已经诊断出植被变化对LGM气候的影响。 RCM的模拟结果表明,东亚大陆全年气温的大幅下降导致冬季季风强烈增强而夏季风减弱。西太平洋副热带高压的加强和向西伸展是华东地区LGM夏季降水减少的主要原因。青藏高原和中亚地区的降水和有效降水增加,而青藏高原的潮湿条件主要是由降水增加引起的。在青藏高原,LGM的积雪也增加了,这有助于形成冰川和永久冻土。该实验模拟了冻土区域向南延伸到30°N。在LGM气候模拟中,外力引起的气候影响通过增加古植被而被放大,因此温度降低,降水和降雪变化以及其他气候参数被进一步的加强,使模拟结果更趋于地质证据。

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