atmospheric excitation
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2020 ◽  
Author(s):  
Yonghong Zhou ◽  
Xueqing Xu ◽  
Cancan Xu ◽  
Jianli Chen ◽  
David Salstein

<p>The dynamic interactions that occur between the solid Earth and surficial fluids are related globally by conservation of angular momentum in the Earth system. Owing to this condition, the surficial fluids have shown to be main excitation sources of the Earth’s variable rotation on timescales between a few days and several years. Likewise, the Mars’ rotation changes due to variations of atmospheric circulation and surface pressure, and the variable Martian polar ice caps associated with the CO<sub>2</sub> sublimation/condensation effects. Investigations of the Earth and Mars’ rotations by surficial fluids may further our understandings of the Earth and planetary global dynamics. Here, we present our recent progresses on excitations of the Earth and Mars’ rotational variations on multiple time scales: (1) differences between the NCEP/NCAR and ECMWF atmospheric excitation functions of the Earth’s rotation, and (2) the Mars’ rotational variations and the dust cycles during the Mars Years 24-31.</p>


2020 ◽  
Vol 7 (2) ◽  
Author(s):  
Nan Yu. ◽  
Gang Chen ◽  
Jim Ray ◽  
Wei Chen ◽  
Nengfang Chao

2014 ◽  
Vol 568-570 ◽  
pp. 106-113
Author(s):  
Jin Ning Gao ◽  
Zhi Bin Zhang ◽  
Shao Zhou Wang

All INT2 sessions from 2002 to 2009 are calculated in this paper, the UT1 corrections calculated by the observations and the periodical change rules of its formal deviation are analyzed with Jurkevich and Fourier methods, and several cases about the corresponding radio source sky-coverage of INT2 sessions are pointed out. According to the results, the atmospheric excitation in summer probably influence the UT1 estimation about 1.5μs, and effective radio source sky-coverage can make up for the defects of few observation scan.


2010 ◽  
Vol 13 (2) ◽  
pp. 130-136 ◽  
Author(s):  
Wei Chen ◽  
Wenbin Shen ◽  
Xiaowei Dong

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