Relative roles of land- and ocean-atmosphere interactions in Asian-Pacific thermal contrast variability at the precessional band
نویسندگان
چکیده
In a 250-kyr transient simulation of the Community Earth System Model (CESM), we identified a precessional forced seesaw of the summer middle-upper tropospheric eddy temperature between Asia and the North Pacific as the paleo-APO (Asian-Pacific oscillation). The paleo-APO variability is out of phase with the precession parameter. Corresponding to a positive paleo-APO phase, both the subtropical anticyclonic circulation over the North Pacific and the East Asian summer monsoon (EASM) strengthen. Summer anomalous sea surface temperature shows a western cold-eastern warm pattern over the extratropical North Pacific and a zonal positive-negative-positive pattern over the tropical Pacific. The variations in the simulated paleo-APO and East Asian southerly wind at the precessional band agree well with the geological proxies at the Dongge, Sanbao, Linzhu, and Hulu caves in China, which also implies that these proxies may well reflect the variability in the southerly wind over East Asia. Sensitivity experiments further reveal that the reduced precession parameter may enhance the positive paleo-APO phase and the associated EASM because of the response of the land-atmosphere interactions to the precessional insolation changes. The effect of the ocean-atmosphere interactions on the paleo-APO is secondary.
منابع مشابه
El Niño/La Niña and Sahel Precipitation During the Middle Holocene
Simulations with a synchronously coupled atmosphere-land-ocean-sea ice model indicate El Niño/La Niña-like events in the eastern tropical Pacific Ocean during the middle Holocene (6 ka) with similar intensities and frequencies as at present (0 ka). July-August-September Sahel precipitation shifts northward as expected from proxy data. For presentday, interannual-decadal variability of western S...
متن کاملProspectus for a Pacific Basinwide Extended Climate Study
Overview per Pacific Ocean exists on time scales from roughly seasonal through decadal, much of which is not well measured, not yet well-tested in models and not utilized in climate predictions. This oceanic variability has strong relationships with the tropical and extratropical atmosphere, through ENSO and the dominant atmospheric teleconnection patterns (principally the PNA), both of which h...
متن کاملVegetation dynamics amplifies precessional forcing
[1] The astronomical theory of climate variations predicts that the climatic precession which changes the seasonal distance between Earth and Sun does not affect the annual mean irradiation at any given latitude. However, previous modeling studies suggest that during interglacials, the interaction between atmosphere, vegetation and ocean can transform the seasonal forcing by precession into an ...
متن کاملSubtropical Forcing of Tropical Pacific Climate and Decadal ENSO Modulation
The relative impact of the subtropical North and South Pacific Oceans on the tropical Pacific climate mean state and variability is estimated using an ocean–atmosphere–sea ice coupled general circulation model. Tailored experiments are performed in which the model is forced by idealized sea surface temperature anomalies (SSTAs) in the subtropics of both hemispheres. The main results of this stu...
متن کاملAnnual Cycle and ENSO in a Coupled Ocean–Atmosphere General Circulation Model
Results from multiyear integrations of a coupled ocean–atmosphere general circulation model are described. The atmospheric component is a rhomboidal 15, 18-level version of the Center for Ocean–Land–Atmosphere Studies atmospheric general circulation model. The oceanic component is the Geophysical Fluid Dynamics Laboratory ocean model with a horizontal domain extending from 708S to 658N. The oce...
متن کامل