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81.
82.
华南区域季节性降水的差异分析 总被引:4,自引:0,他引:4
运用EOF方法研究华南区域降水时空分布特征,结果表明:(1)华南地区各季节降水在年际和年代际的时间变化上有区域一致性,但有季节性差异,其中春季和秋季在20世纪80年代后降水明显减少,旱年增多;而夏季90年代后降水明显增加,涝年增多;冬季变化则不明显。(2)华南地区各季节降水在空间分布上也有差异,其中春季降水呈现东多西少的分布特征,大值中心位于广西东北部、广东中部及西南沿海。夏季和秋季降水相似,呈南多北少的分布特征,大值中心位于广西沿海和广东西南沿海。冬季降水呈东北多西南少的分布特征,大值中心位于粤北。 相似文献
83.
Summary A pilot tropical cyclone reanalysis project was conducted to construct a reliable, high temporal and spatial resolution tropical
cyclone dataset for selected western Pacific typhoons in summer 2004, with the application of the latest satellite observations
and a 4-dimensional variational data assimilation method. Primary data used for the reanalysis include SSM/I rain rate, GOES-retrieved
upper-level wind, QuikSCAT surface wind, Aqua AIRS/AMSU retrieved temperature and moisture profiles, and JTWC best track data.
A regular reanalysis procedure was established and up to 12 western Pacific typhoons have been reanalyzed. The reanalysis
period covers the entire life cycle of a tropical cyclone, from a few days prior to its genesis to its final decay stage.
A preliminary analysis shows that the reanalysis product significantly improves typhoon intensity, structure, and track, compared
to the NCEP operational final analysis. The validation of the TC structure against independent observations shows that the
reanalysis reproduces well the asymmetric characteristics of TC rain bands and cloud bands. A further modeling experiment
with an initial condition from the reanalysis product reveals a significant improvement in typhoon intensity forecast compared
to a parallel experiment with an initial condition from the NCEP final analysis, which provides a further indication of quality
of the tropical cyclone reanalysis. The reanalysis product and the raw observational data will soon be posted on the data
server of the IPRC Asia-Pacific Data-Research Center () for public use. 相似文献
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Rui-Zhi Yang Jin Chang Jian Wu Purple Mountain Observatory Chinese Academy of Sciences Nanjing China 《中国天文和天体物理学报》2010,10(1)
Results from PAMELA and ATIC indicate that the Kaluza-Klein type dark matter particles could be the annihilation source of the observed excess of electrons and positrons.Assuming the existence of a nearby black hole with 10000–100000 solar masses and a point source boost algorithm,we apply the standard propagation model and find that the results fit the data well. 相似文献
88.
The characteristics of the response of equatorial Pacific upper ocean current to westerly wind bursts(WWB)were analyzed in the frequency domain by using wind and ADCP data collected by the Shiyan3 during TOGA-COARE IOP,1992-1993.The preliminary results showed that the response consistedof an eastward surface jet at shallower than 60m depth,a westward counter current centering near100m and a shear layer between them,with the variations of all three being nonlinear and nearlysynchronous.The oceanic responses in the frequency domain were characterized by occurrences of a remotely forced mixed Rossby-gravity wave with period of 8-10 days in the surface jet andcountercurrent at shallower than 110 m depth,and two locally forced waves with periods of 24 daysand 4-5 days limited in shallower than 70m depth.These fluctuations of the responses depended much more on zonal wind than meridional wind.The results also revealed that the oceanic response toWWB resulted from momentum transport and energy propagation assoc 相似文献
89.
介绍基于直接数字合成技术(DDS)研制的正弦激励源系统工作原理,运用matlab-simulink仿真模块仿真正弦激励源数据,结果表明,幅值稳定性可达到10-6~10-7,频率稳定性达到10-4,该系统能解决以往正弦电路中幅值稳定度和高频时频率稳定度差的问题,提高航空重力仪的观测精度。 相似文献
90.
Status of the Recent Declining of Arctic Sea Ice Studies 总被引:2,自引:0,他引:2
In the past 30 years, a large-scale change occurred in the Arctic climatic system, which had never been observed before 1980s. At the same time, the Arctic sea ice experienced a special evolution with more and more rapidly dramatic declining. In this circumstance, the Arctic sea ice became a new focus of the Arctic research. The recent advancements about abrupt change of the Arctic sea ice are reviewed in this paper .The previous analyses have demonstrated the accelerated declining trend of Arctic sea ice extent in the past 30 years, based on in-situ and satellite-based observations of atmosphere, as well as the results of global and regional climate simulations. Especially in summer, the rate of decrease for the ice extents was above 10% per decade. In present paper, the evolution characteristics of the arctic sea ice and its possible cause are discussed in three aspects, i.e. the sea ice physical properties, the interaction process of sea ice, ocean and atmosphere and its response and feedback mechanism to global and arctic climate system. 相似文献