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超级变变变 第二部:平面变立体
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作者 jaro 《电脑应用文萃(电脑界配套光盘)》 2002年第6期57-57,共1页
你的性格是外向型还是内向型虽然内向的人能力也许并不逊色,但总不如外向型的人能更好地表达自己。归根结底这可能是个表现力的问题。具体到图像的制作恐怕也是如此,平面的可能不如立体的更容易让人接受。这回我们就为大家介绍两个给平... 你的性格是外向型还是内向型虽然内向的人能力也许并不逊色,但总不如外向型的人能更好地表达自己。归根结底这可能是个表现力的问题。具体到图像的制作恐怕也是如此,平面的可能不如立体的更容易让人接受。这回我们就为大家介绍两个给平面图片加上立体感的小软件。 展开更多
关键词 平面变立体 图像制作软件 软件界面
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An Analysis of the Steric Sea Level Change by Introducing Sea Surface Temperature
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作者 SUN Ruili LI Lei LI Peiliang 《Journal of Ocean University of China》 SCIE CAS 2013年第1期37-44,共8页
In this paper, we use the optimum interpolation sea surface temperature (OISST) provided by the National Center for Environmental Prediction (NCEP) to replace the temperature in the top three layers in the ISHII data,... In this paper, we use the optimum interpolation sea surface temperature (OISST) provided by the National Center for Environmental Prediction (NCEP) to replace the temperature in the top three layers in the ISHII data, and make use of the modified ISHII temperature data to calculate the thermosteric sea level (called modified steric sea level (SSL) hereafter). We subtract the modified SSL and the steric sea level (called ordinary SSL hereafter) derived from the ISHII temperature and salinity from the steric sea level (SSL) provided by the Gravity Recovery and Climate Experiment (GRACE), respectively, and find that the rms error of the difference of the former is obviously smaller than that of the latter. Therefore we reach the conclusion that under the assumption that the GRACE SSL is accurate, the modified SSL can reflect the true steric sea level more accurately. Making use of the modified SSL, we can find that the modified SSL in sea areas of different spatial scales shows an obvious rising trend in the upper 0-700 m layer for the period 1982-2006. The global mean SSL rises with a rate of 0.6 mm year-1 .The modified SSLs in sea areas of different spatial scales all show obvious oscillations with period of one year. There are oscillations with periods of 4-8 years in global oceans and with periods of 2-7 years in the Pacific. The Empirical Orthogonal Function method is applied to the sea areas of different spatial scales and we find that the first modes all have obvious 1-year period oscillations, the first mode of the global ocean has 4-8 year period oscillations, and that of the Pacific has 2-6 year period oscillations. The spatial distribution of the linear rising trend of the global modified SSL in the upper 0-700 m layer is inhomogeneous with intense regional characteristics. The modified SSL linear trend indicates a zonal dipole in the tropical Pacific, rising in the west and descending in the east. In the North Atlantic, the modified SSL indicates a meridional dipole, rising in the latitude band of 20°N-40°N and 45°N-65.5°N and descending obviously in the latitude band of 40°N-45°N. 展开更多
关键词 GRACE ISHII OISST steric sea level
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Seasonal Change of Steric Sea Level in the GIN Seas
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作者 LI Lei WANG Huijuan SUN Ruili 《Journal of Ocean University of China》 SCIE CAS 2011年第1期16-22,共7页
The Greenland Sea,Iceland Sea,and Norwegian Sea (GIN seas) form the main channel connecting the Arctic Ocean with other Oceans,where significant water and energy exchange take place,and play an important role in globa... The Greenland Sea,Iceland Sea,and Norwegian Sea (GIN seas) form the main channel connecting the Arctic Ocean with other Oceans,where significant water and energy exchange take place,and play an important role in global climate change.In this study steric sea level,associated with temperature and salinity,in the GIN seas is examined based on analysis of the monthly temperature and salinity fields from Polar science center Hydrographic Climatology (PHC3.0).A method proposed by Tabata et al.is used to calculate steric sea level,in which,steric sea level change due to thermal expansion and haline contraction is termed as the thermosteric component (TC) and the halosteric component (SC),recpectively.Total steric sea level (TSSL) change is the sum of TC and SC.The study shows that SC is making more contributions than TC to the seasonal change of TSSL in the Greenland Sea,whereas TC contributes more in the Norwegian and the Iceland Seas.Annual variation of TSSL is larger than 50 mm over most regions of the GIN Seas,and can be larger than 200 mm at some locations such as 308 mm at 76.5 N,12.5 E and 246 mm at 77.5 N,17.5 W. 展开更多
关键词 GIN seas steric sea level seasonal change
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