INFLUENCES OF THERMAL FORCING OVER THE SLOPE/PLATFORM OF THE TIBETAN PLATEAU ON ASIAN SUMMER MONSOON: NUMERICAL STUDIES WITH THE WRF MODEL

WANG Zi-Qian, DUAN An-Min, LI Mao-Shan, HE Bian
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引用次数: 18

Abstract

With the global warming, the evolution of Asian summer monsoon (ASM) becomes more complicated, while the thermal effect of the Tibetan Plateau (TP) is an important forcing to the variability of weather and climate in ASM region. Regional climate model (RCM) is a useful tool in the regional climate change research and has higher resolutions that can represent topography and land surface processes more accurately comparing with atmospheric general circulation models (AGCMs). In this study, the impact of thermal forcing over different terrains of TP on ASM (including South and East ASM (SASM and EASM)) is investigated using the Weather Research and Forecasting (WRF) model. Results indicate that the local circulation and precipitation around the Himalayas (HIM) are significantly influenced by the surface heating over the HIM's southern slope, which is a dominant factor for the formation of the north branch of SASM. Meanwhile, the climbing moist airflow and precipitation over the southern slope of TP are mainly induced by HIM's thermal forcing. Due to HIM's sloping heating, the upper-level troposphere warm center is steadily located over the HIM area and the EASM is also intensified obviously (Characterized both by the enhanced low-level southwesterly over East China and the enhanced southward anomalous dry-cold northerly). As to the surface heating over TP's platform region (PL), although its influence on the summer monsoon circulation and precipitation is weaker than the HIM's, it induces a wider response of SASM and a stronger influence on the meridional Hadley circulation. The PL's heating is able to regulate low-level southwesterly over the remote tropical ocean. Furthermore, a comparison of multiple monsoon indices reveals that both HIM sloping heating and PL heating can intensify SASM or EASM, but the impacts of thermal forcing over different terrains are distinct on the two subsystems of ASM.

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青藏高原斜坡/台地热力强迫对亚洲夏季风的影响:WRF模式的数值研究
随着全球气候变暖,亚洲夏季风(ASM)的演变变得更加复杂,而青藏高原(TP)的热效应是影响亚洲夏季风地区天气气候变率的重要因素。区域气候模式(RCM)是区域气候变化研究的重要工具,与大气环流模式(agcm)相比,RCM具有更高的分辨率,可以更准确地表征地形和地表过程。本文利用WRF模式研究了青藏高原不同地形的热强迫对南亚暖流(包括南亚暖流和东南亚暖流)的影响。结果表明,喜马拉雅地区的局地环流和降水受到喜马拉雅南坡地表加热的显著影响,是南亚副热带副热带北支形成的主导因素。同时,青藏高原南坡的上升湿气流和降水主要是由HIM的热强迫引起的。由于高低压的倾斜加热作用,高低压对流层暖中心稳定位于高低压上空,东亚东气流也明显增强(表现为东部西南低气压增强和南向距平干冷北风增强)。高原台区地面加热对夏季风环流和降水的影响虽弱于高原台区,但对SASM的响应更广,对经向Hadley环流的影响更强。PL的加热能够调节遥远热带海洋上空的低空西南风。此外,对多个季风指数的对比分析表明,高原倾斜加热和高原加热都能强化南亚热带风暴或东亚热带风暴,但不同地形的热强迫对南亚热带风暴的影响是不同的。
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