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面向事件的气象数据流滑动窗口查询机制研究
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作者 连世伟 李宏伟 《测绘与空间地理信息》 2019年第6期4-7,共4页
NCEP的再分析计划以气象数据为数据源,从事件的角度定义了元对象,探讨了基于事件的元对象查询机制,分析了各属性异常、综合属性异常、属性异常频繁和属性分布等4个事件元对象的查询过程。定义了数据流、滑动窗口和地理数据块,提出了面... NCEP的再分析计划以气象数据为数据源,从事件的角度定义了元对象,探讨了基于事件的元对象查询机制,分析了各属性异常、综合属性异常、属性异常频繁和属性分布等4个事件元对象的查询过程。定义了数据流、滑动窗口和地理数据块,提出了面向事件的气象数据流滑动窗口查询方法,为气象数据流的检测、分类、频繁挖掘和高维聚类奠定良好基础。 展开更多
关键词 气象数据流 滑动窗口查询 地理实体 元对象
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The Analysis of the Characteristics of the Dishpan Experiment and the Revolving Motion of Atmosphere 被引量:1
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作者 陈刚毅 谢莉辉 《Applied Geophysics》 SCIE CSCD 2005年第4期254-258,共5页
In this paper we summarize the characteristics of the dishpan experiment, the principle of substance revolving, and the scientific basis of the “retrograde wave in only one direction” with respect to weather data an... In this paper we summarize the characteristics of the dishpan experiment, the principle of substance revolving, and the scientific basis of the “retrograde wave in only one direction” with respect to weather data and S. C. OuYang's articles in which the fundamental questions in the meteorological theory were pointed out. Furthermore, we discuss the systematic changes involving the concept, theory, and method that substance evolves. 展开更多
关键词 Retrograde wave in only one direction Dishpan experiment Eddy current Evolves.
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Debris Flow in Metropolitan Area - 2011 Seoul Debris Flow 被引量:1
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作者 Chan-Young YUNE Yun-Ki CHAE +3 位作者 Joongcheol PAIK Gihong KIM Seung-Woo LEE Heung-Seok SEO 《Journal of Mountain Science》 SCIE CSCD 2013年第2期199-206,共8页
A large number of debris flows occurred simultaneously at around 8:30 to 8:50 a.m.on July 27,2011,at the center of Seoul,Korea.This area is located in the southern part of Seoul and is a densely populated district.As ... A large number of debris flows occurred simultaneously at around 8:30 to 8:50 a.m.on July 27,2011,at the center of Seoul,Korea.This area is located in the southern part of Seoul and is a densely populated district.As a result of the debris flow event,16 people were killed,30 houses were buried,and 116 houses were damaged around Umyeon Mountain,a relatively small mountain with a height of 312.6 m.Since the debris flow event,field investigations on the initiation and transportation zones of debris flows have been carried out.Rainfall data were collected from the automatic weather stations(AWSs) which are operated by the Korea Meteorological Administration(KMA).Video files recorded by residents were also acquired and used to analyze the flow characteristics of the debris flow.Field investigation shows that about 40 debris flows occurred around Umyeon Mountain and most of the debris flows were initiated by small slope failures.The effects of the precipitation that triggered the debris flows were analyzed as well.A landslide hazard map which considers slope gradient and aspect,strength of soil,hazard record,rainfall conditions,and vegetation,was constructed and compared with the initiation zones of debris flows. 展开更多
关键词 Debris flows Field investigation RAINFALL Flow characteristics Hazard map
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Tropospheric Scintillation Estimation Using 10 Years Meteorological Data
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作者 Muhammad Tahir PIAO Yan +1 位作者 Muhammad Aslam Azizur Rahim 《China Communications》 SCIE CSCD 2015年第3期43-49,共7页
This paper presents estimation of tropospheric scintillation based on ITU-R model from previous 10 years meteorological data.Scintillation As(p) is critical in designing of microwave links for achieving optimal perfor... This paper presents estimation of tropospheric scintillation based on ITU-R model from previous 10 years meteorological data.Scintillation As(p) is critical in designing of microwave links for achieving optimal performance.There are many phenomenons that cause degradation to signal during transmission through the earth's atmosphere one of them is scintillation.Scintillation estimation is based on measurements of surface temperature T and relative humidity RH.Input parameter for ITU-R scintillation estimation model is the monthly average of wet part of refractivity Nwet.MATLAB software tool is employed to show the results for tropospheric scintillation in various seasons for time percentage p and frequencies ranging from 4GHz to 20 GHz. 展开更多
关键词 troposphere scintillation ITU-R fading meteorology
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