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4篇 您的检索式:作者名="Zheng 17"
    题名 作者 年代 出处 被引量
1Rotor like ZnO by Ep- itaxial Growth under Hydrothermal Conditions 显示文摘Gao X P Zheng Z 17 Zha H Y 2004Chem Commun2004,40,12:1
2Controlled release and antibacterial activity of antibiotic-loaded electrospun halloysite/poly(lactic-co-gly- colic acid) composite nanofibers显示文摘Qi R Guo R Zheng 17 2013Colloids Surf B Biointerfaces2013,,110:1
3Effects of nitrogen application rate, density and seedling age on dry matter accumulation of notillage rape in seedling stage 显示文摘Ai FQ Zheng 17 Shu ZB 2008Agricultural Science & Technology2008,9,96:1
4Analysis of sea surface height variabilities in the Kuroshio Current region by using Geosat altimeter data显示文摘The Geosat altimeter ERM T2-GDRs data were used to analyze sea surface height (SSH) variabilities in the Northwest Pacific region of 10°- 45°N, 120°-- 160°E covering all the Kuroshio Current. After processing the Geosat GDRs data, the 50 gridded SSH anomaly fields were acquired. The comparison between the SSH anomalies and tidal gauge sea levels showed that the altimeter data accorded with the tidal gauge data especially in the low frequency scale and in open sea. The mesoscale variability energy distribution obtained from the SSH anomalies was controlled by the position of the Kuroshio, bottom topography and the stationary meander of the Kuroshio. The relative transports of the Kuroshio Extension and the Kuroshio south of Japan, represented by the difference between the SSH anomalies on two sides of the current, had strong interannual and seasonal cycles, which was related to the Kuroshio large meander. When the Kuroshio meander occurred, the transport of the Kuroshio east of the Tokara Strait decreased, but that northeast of Taiwan Island increased. The variability of the transport east of the Philippines reflected the effects of the ENSO. The EOF analysis of the SSH anomaly fields showed that the first three EOFs accounted for 25.3%, 17.1 % and 13.7% of the total variance, and represented the meander mode, the ENSO mode and season mode respectively.Pan Jiayi Yuan Yeli and Zheng Quan’an 1. First Institute of Oceanography, State Oceanic Administration, Qingdao 266003, China 2. Center for Remote Sensing, University of Delaware, Newark, DE19716, USA (Received May 8, 1998 accepted June 17, 1998) 1999Acta Oceanologica Sinica1999,18,2:0
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