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Association of the pre-monsoon thermal field over north India and the western Tibetan Plateau with summer monsoon rainfall over India

机译:印度北部和青藏高原西部的季风前热场与印度夏季季风降雨的联系

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In this paper, interannual variability of tropospheric air temperatures over the Asian summer monsoon region during the pre-monsoon months is examined in relation to Indian summer monsoon rainfall (ISMR; June to September total rainfall). For this purpose, monthly grid-point temperatures in the entire troposphere over the Asian summer monsoon region and ISMR data for the period 1949-2012 have been used. Spatial correlation patterns are investigated between the temperature field in the lower tropospheric levels during May over the Asian summer monsoon region and ISMR. The results indicate a strong and significant northwest-southeast dipole structure in the spatial correlations over the Indian region, with highly significant positive (negative) correlations over the regions of north India and the western Tibetan Plateau region - region R1 (north Bay of Bengal: region R2). The observed dipole is seen significantly up to a level of 850 hPa and eventually disappears at 700 hPa. Thermal indices evaluated at 850 hPa level, based on average air temperatures over the north India and western Tibetan Plateau region (TI1) and the north Bay of Bengal region (TI2) during May, show a strong, significant relationship with the ISMR. The results are found to be consistent and robust, especially in the case of TI1 during the period of analysis. A physical mechanism for the relationship between these indices and ISMR is proposed. Finally the composite annual cycle of tropospheric air temperature over R1 during flood/drought years of ISMR is examined. The study brings out the importance of the TI1 in the prediction of flood/drought conditions over the Indian subcontinent.
机译:本文研究了季风前几个月亚洲夏季风区域对流层空气温度的年际变化与印度夏季风降水(ISMR; 6月至9月的总降雨量)的关系。为此,已使用了亚洲夏季风区域整个对流层的月度网格点温度和1949-2012年期间的ISMR数据。研究了亚洲夏季风地区5月对流层低层温度场与ISMR之间的空间相关性。结果表明,印度洋地区的空间相关性具有强而显着的西北-东南偶极结构,印度北部和青藏高原西部地区-R1区(孟加拉北部湾)则具有高度显着的正(负)相关性。区域R2)。观察到的偶极子明显达到850 hPa的水平,并最终在700 hPa消失。根据印度北部和青藏高原西部地区(TI1)和孟加拉北部地区北部湾(TI2)的平均气温,在850 hPa的水平上评估的热指数与ISMR表现出强烈的显着关系。发现结果是一致且可靠的,尤其是在分析期间使用TI1的情况下。提出了这些指标与ISMR之间关系的物理机制。最后,研究了在ISMR的洪水/干旱年份,R1上对流层空气温度的复合年循环。该研究揭示了TI1在预测印度次大陆洪水/干旱状况方面的重要性。

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