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10篇 您的检索式:作者名="Jiang Dechang"
    题名 作者 年代 出处 被引量
1Density-based trajectory outlier detection algorithm显示文摘With the development of global position system(GPS),wireless technology and location aware services,it is possible to collect a large quantity of trajectory data.In the field of data mining for moving objects,the problem of anomaly detection is a hot topic.Based on the development of anomalous trajectory detection of moving objects,this paper introduces the classical trajectory outlier detection(TRAOD) algorithm,and then proposes a density-based trajectory outlier detection(DBTOD) algorithm,which compensates the disadvantages of the TRAOD algorithm that it is unable to detect anomalous defects when the trajectory is local and dense.The results of employing the proposed algorithm to Elk1993 and Deer1995 datasets are also presented,which show the effectiveness of the algorithm.Zhipeng Liu Dechang Pi Jinfeng Jiang 2013Journal of Systems Engineering and Electronics2013,24,2:9
2Combustion characteristics of super fine pulverized coal particle显示文摘Jiang Xiumin Li Jubin Liu Dechang 2001Energy & Fuels2001,15,5:1
3Fenton oxidation and sequencing batch reactor (SBR) treatments of highstrength semiconductor 显示文摘Lin Hongsheng Jiang Dechang 2003Wastewater Desalination2003,154,3:1
4The genera- tion of XML-based datasets for moving object database 显示文摘Jiang Xiajun Zhang Yuping Pi Dechang 2011Adv Inform Sci Serv Sci2011,3,2:1
5Combustion characteristics of super fine pulverized coal particle显示文摘Jiang Xiumin Li Jubin Liu Dechang 2001Energy & Fuels2001,15,5:1
6Combustion characteristics of super fine pulverized coal particle 显示文摘Jiang Xiumin Li Jubin Liu Dechang 2001Energy&Fuels2001,15,5:1
7Experimental Investigation on Oil Shale Circulating Fluidized Bed Boiler 显示文摘Jiang Xiumin Liu Dechang Chen Hanping 2001Oil Shale2001,18,1:1
8Fenton oxidation and sequencing batch reactor(SBR) treatments of high- strength semiconductor wastewater 显示文摘Lin Hongsheng Jiang Dechang 2003Desalination2003,154,2:1
93D-printed Lunar regolith simulant-based geopolymer composites with bio-inspired sandwich architectures显示文摘Over time,natural materials have evolved to be lightweight,high-strength,tough,and damage-tolerant due to their unique biological structures.Therefore,combining biological inspiration and structural design would provide traditional materials with a broader range of performance and applications.Here,the application of an ink-based three-dimensional(3D)printing strategy to the structural design of a Lunar regolith simulant-based geopolymer(HIT-LRS-1 GP)was first reported,and high-precision carbon fiber/quartz sand-reinforced biomimetic patterns inspired by the cellular sandwich structure of plant stems were fabricated.This study demonstrated how different cellular sandwich structures can balance the structure–property relationship and how to achieve unprecedented damage tolerance for a geopolymer composite.The results presented that components based on these biomimetic architectures exhibited stable non-catastrophic fracture characteristics regardless of the compression direction,and each structure possessed effective damage tolerance and anisotropy of mechanical properties.The results showed that the compressive strengths of honeycomb sandwich patterns,triangular sandwich patterns,wave sandwich patterns,and rectangular sandwich patterns in the Y-axis(Z-axis)direction were 15.6,17.9,11.3,and 20.1 MPa(46.7,26.5,23.8,and 34.4 MPa),respectively,and the maximum fracture strain corresponding to the above four structures could reach 10.2%,6.7%,5.8%,and 5.9%(12.1%,13.7%,13.6%,and 13.9%),respectively.Siqi Ma Yuqi Jiang Shuai Fu Peigang He Chengyue Sun Xiaoming Duan Dechang Jia Paolo Colombo Yu Zhou 2023Journal of Advanced Ceramics2023,12,3:0
10INFLUENCE OF NANOMETER GRAIN SIZE OF Bi-2212 PHASE ON SUPERCONDUCTIVITY显示文摘INFLUENCEOFNANOMETERGRAINSIZEOFBi-2212PHASEONSUPERCONDUCTIVITY¥ZHANGCheng;WANGYongzhong;JIANGMing;ZENGDechang;TANGHong;LIZhon...ZHANG Cheng WANG Yongzhong JIANG Ming ZENG Dechang TANG Hong LI Zhongrun QIAO Guiwen CHUANG Yuzhi(Institute of Metal Research,Chinese Academy of Sciences,Shenyang,China) 1995Acta Metallurgica Sinica(English Letters)1995,8,2:0
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