Based on the geological evidence that the northern Tibetan Plateau (NTP) had an uplift of a finite magnitude since the Miocene and the major Asian inland deserts formed in the early Pliocene, a regional climate model (RegCM4.1) with a horizontal resolution of 50 km was used to explore the effects of the NTP uplift and the related aridification of inland Asia on regional climate. We designed three numerical experiments including the control experiment representing the present-day condition, the high-mountain experiment representing the early Pliocene condition with uplifted NTP but absence of the Asian inland deserts, and the low-mountain experiment representing the mid-Miocene condition with reduced topography in the NTP (by as much as 2400...
Considering the different uplifting time of different subregions of the Himalaya-Tibetan Plateau (TP...
Much geological research has illustrated the transition of paleoenvironmental patterns during the Ce...
The Late Miocene (11.6–5.3 Ma) is a crucial period in the history of the Asian monsoon. Significant ...
Based on the geological evidence that the northern Tibetan Plateau (NTP) had an uplift of a finite m...
Northern Tibetan Plateau uplift and global climate change are regarded as two important factors resp...
A global atmospheric general circulation model has been used to perform eleven idealized numerical e...
Te impact of the Tibetan Plateau uplif on the Asian monsoons and inland arid climates is an importan...
Using the COLA (Center for Ocean-Land-Atmosphere Studies) general circulation model, a series of num...
The Tibetan plateau has significant roles in the formation of the Asian monsoon circulation. The eff...
Large topographic features, like the Tibetan Plateau (TP) and the Rocky Mountains, have significant ...
The dynamic and thermal effects of the Tibetan Plateau (TP) on the precipitation in the Asian arid a...
Numerical simulations were conducted to determine the impact of the Tian Shan Mountains and Pamir Pl...
Mid-latitude Central Asia is characterized by an extreme arid landscape. Among the Central Asian des...
Holding a climatically and geologically key position both regionally and globally, the northeastern ...
Considering the different uplifting time of different subregions of the Himalaya-Tibetan Plateau (TP...
Considering the different uplifting time of different subregions of the Himalaya-Tibetan Plateau (TP...
Much geological research has illustrated the transition of paleoenvironmental patterns during the Ce...
The Late Miocene (11.6–5.3 Ma) is a crucial period in the history of the Asian monsoon. Significant ...
Based on the geological evidence that the northern Tibetan Plateau (NTP) had an uplift of a finite m...
Northern Tibetan Plateau uplift and global climate change are regarded as two important factors resp...
A global atmospheric general circulation model has been used to perform eleven idealized numerical e...
Te impact of the Tibetan Plateau uplif on the Asian monsoons and inland arid climates is an importan...
Using the COLA (Center for Ocean-Land-Atmosphere Studies) general circulation model, a series of num...
The Tibetan plateau has significant roles in the formation of the Asian monsoon circulation. The eff...
Large topographic features, like the Tibetan Plateau (TP) and the Rocky Mountains, have significant ...
The dynamic and thermal effects of the Tibetan Plateau (TP) on the precipitation in the Asian arid a...
Numerical simulations were conducted to determine the impact of the Tian Shan Mountains and Pamir Pl...
Mid-latitude Central Asia is characterized by an extreme arid landscape. Among the Central Asian des...
Holding a climatically and geologically key position both regionally and globally, the northeastern ...
Considering the different uplifting time of different subregions of the Himalaya-Tibetan Plateau (TP...
Considering the different uplifting time of different subregions of the Himalaya-Tibetan Plateau (TP...
Much geological research has illustrated the transition of paleoenvironmental patterns during the Ce...
The Late Miocene (11.6–5.3 Ma) is a crucial period in the history of the Asian monsoon. Significant ...