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3篇 您的检索式:作者名="Cheng Minkang"
    题名 作者 年代 出处 被引量
1高层大气旋转速度分析显示文摘根据King-Hele的原理,从GFZ等卫星的轨道高度的衰减以及倾角的长期变化,分析计算从地面高度180~360km的大气旋转速度的变化规律.计算结果显示大气旋转速度从360km处的1.2rev/d下降到180km的0.9rev/d.马静远 掌静 Cheng Minkang 2008中国科学(G辑)2008,38,8:0
2Improved geophysical excitations constrained by polar motion observations and GRACE/SLR time-dependent gravity显示文摘At seasonal and intraseasonal time scales, polar motions are mainly excited by angular momentum fluctuations due to mass redistributions and relative motions in the atmosphere, oceans, and continental water, snow, and ice, which are usually provided by various global atmospheric, oceanic, and hydrological models(some with meteorological observations assimilated; e.g., NCEP, ECCO, ECMWF, OMCT and LSDM etc.). Unfortunately, these model outputs are far from perfect and have notable discrepancies with respect to polar motion observations, due to non-uniform distributions of meteorological observatories,as well as theoretical approximations and non-global mass conservation in these models. In this study,the LDC(Least Difference Combination) method is adopted to obtain some improved atmospheric,oceanic, and hydrological/crospheric angular momentum(AAM, OAM and HAM/CAM, respectively)functions and excitation functions(termed as the LDCgsm solutions). Various GRACE(Gravity Recovery and Climate Experiment) and SLR(Satellite Laser Ranging) geopotential data are adopted to correct the non-global mass conservation problem, while polar motion data are used as general constraints. The LDCgsm solutions can reveal not only periodic fluctuations but also secular trends in AAM, OAM and HAM/CAM, and are in better agreement with polar motion observations, reducing the unexplained excitation to the level of about 5.5 mas(standard derivation value; about 1/5-1/4 of those corresponding to the original model outputs).Wei Chen Jiancheng Li Jim Ray Minkang Cheng 2017Geodesy and Geodynamics2017,8,6:0
3Upper atmospheric rotation rate from orbit analysis显示文摘The rotation speed Λ of the upper atmosphere,mainly at heights of 180-360 km,was evaluated from the changes in orbital inclinations of GFZ. The results indicate that the value of Λ(in rev/d) decreases from 1.2 at 360 km to 0.9 at 180 km.MA JingYuan ZHANG Jing CHENG MinKang 2008Science China(Physics,Mechanics & Astronomy)2008,51,8:0
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