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12篇 您的检索式:作者名="Shuge"
    题名 作者 年代 出处 被引量
1Target sequence optimization for multiple debris rendezvous using low thrust based on characteristics of SSO显示文摘A method is proposed to select the target sequence for a J 2-perturbed multiple debris rendezvous mission aimed at removing dozens of debris from several thousand debris candidates running on sun-synchronous orbits(SSO).The solving methodology proceeds in two steps:Firstly,the variance of the right ascension of ascending node(RAAN)of the debris group is used for narrowing down the potential debris candidate;secondly,the debris of the candidate group that has closest RAAN to the current debris is chosen as the next debris.The low thrust near-minimum-fuel trajectories of each rendezvous leg are obtained by the indirect optimization method.The proposed approach is demonstrated for the problem of the 8th China Trajectory Optimization Competition(CTOC).The radar cross section(RCS)of the debris is also considered in the first step since the primary performance index of the competition is to maximize the total RCS of the debris visited.The results show that the proposed approach achieves better performance within a competition period.Of the many rendezvous sequences found,the best one submitted for the competition obtained a total RCS of 184 by accomplishing rendezvous with 70 debris within a transfer duration of one year.Shuge Zhao Jingrui Zhang Kaiheng Xiang Rui Qi 2017Astrodynamics2017,1,1:6
2PREPARATION OF TiNi SHAPE MEMORY ALLOY POROSINT BY SHS显示文摘PREPARATIONOFTiNiSHAPEMEMORYALLOYPOROSINTBYSHS①ChuChenglin,LiBo,WangShidong,ZhangShuge,YangXiaoxi,YinZhongdaBox4...Chu Chenglin *, Li Bo ** , Wang Shidong ** , Zhang Shuge *** , Yang Xiaoxi *** , Yin Zhongda * * Box 433, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001 ** Analysis and Testing Center 1997中国有色金属学会会刊:英文版1997,7,4:3
3A defect-based strategy for the preparation of mesoporous zeolite Y for high-performance catalytic cracking显示文摘Zhengxing Qin Baojian Shen Zhiwu Yu Feng Deng Liang Zhao Shuge Zhou Delin Yuan Xionghou Gao Baojie Wang Hongjuan Zhao Honghai Liu 2013Journal of Catalysis2013,,:1
4Surface photovoltaic properties of monocryatal silicon显示文摘Jiang Xiaohong Zhang Xingtang Peng Shuge 2001Journal of Henan University: Natural Science Edition2001,31,3:1
5Essential oil composition of the dracocephalum moldavica L from xinjiang in China显示文摘Shuge T Xiaoying Z Fan Z 0,,04:1
6Chemical fingerprinting by RP-RRLC-DAD and principal component analysis of Ziziphora clinopodioides Lam from different locations显示文摘Shuge Tian Qian Yu Lude Xin 2012Natural Product Communications2012,7,1:1
7Biochemical characterization of a novel thermostable GH11 xylanase with CBM6 domain from Caldicellulosiruptor kronotskyensis显示文摘Weibo Qiao Shuge Tang Shuofu Mi Xiaojing Jia Xiaowei Peng Yejun Han 2014Journal of Molecular Catalysis. B, Enzymatic2014,,:1
8Research on marketing module and competitive strategy of E-Business Based on the VIP Website显示文摘Zuo Teng Tian Shuge Chang Yue 2015International English Education Research2015,,5:0
9Research on Regulating and Controlling Homogenization of Entertainment Programs--Based on Game Theory显示文摘Chen Mei Tian Shuge 2014International English Education Research2014,,12:0
10Design of phase interface and defect in niobium-nickel oxide for ultrafast Li-ion storage显示文摘Niobium pentoxide(Nb2O5)has attracted much attention in lithium batteries due to its advantages of high operating voltage,large theoretical capacity,environmental friendliness and cost-effectiveness.However,the intrinsic poor electrical conductivity,sluggish kinetics,and large volume changes hinder its electrochemical performance at high power density,making it away from the requirements for practical applications.In this research work,we regulate the electron transport of niobium-nickel oxide(NiNbO)anode material with enhanced structural stability at high power density by constructing the two-phase boundaries between niobium pentoxide(Nb2O5)and nickel niobate(NiNb2O6)through simple solid phase reaction.In addition,the presence of lattice defects in NiNbO-F further speeds up the transport of Li+and promotes the electrochemical reaction kinetics more effectively.The two-phase boundaries and defect modulated anode material displays high Li+diffusion coefficient of 1.63×10^(−10) cm^(2) s^(−1),pretty high initial discharge capacity of 222.8 mAh g^(−1) at 1 C,extraordinary high rate performance(66.7 mAh g^(−1))at an ultrahigh rate(100 C)and ultra-long cycling stability under high rate of 25 C(83.4 mAh g^(−1) after 2000 cycles)with only 0.016%attenuation per cycle.These results demonstrate an effective approach for developing electrode materials that greatly improve rate performance and durability.Haiting Chen Haoyan Cheng Hangchen Liu Yibo Hu Tongtong Yuan Shuge Dai Meilin Liu Hao Hu 2023Journal of Materials Science & Technology2023,,16:0
11Empirical Research on Mobile Phone Reading Based on User Behavior Analysis显示文摘Chen Mei Tian Shuge Wang Mingyan Li Hongyan 2015International English Education Research2015,,8:0
12In Situ Electrochemical Transmission Electron Microscopy for Sodium-Ion Batteries显示文摘Sodium-ion batteries(SIBs)possess promising application prospects for large-scale energy storage systems due to the abundance of sodium ions as a resource and their low cost.Development of advanced SIBs requires a clear understanding of the structures and kinetic/dynamic processes occurring in the cells during the charging/discharging process.In situ transmission electron microscopy(TEM)is a powerful tool for direct visualization of the phase transitions as well as morphological and structural evolutions of the electrodes during the electrochemical reaction process.Herein,we summarize the state-of-the-art in situ TEM studies on SIBs with a specific focus on real-time observations of the electrochemical behavior of battery materials.This review emphasizes the necessity of in situ TEM to elucidate fundamental issues regarding the reaction mechanism,phase transformation,structural evolution,and performance degradation of SIBs.Finally,critical challenges and emerging opportunities for in situ TEM research about SIBs are discussed.Shuge Dai Jingwen Zhang Jiaqi Qu Xing Li Shaobo Cheng Chongxin Shan 2023Renewables2023,1,1:0
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