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13篇 您的检索式:作者名="An Qunli"
    题名 作者 年代 出处 被引量
1TIME-TEMPERATURE-STRESS EQUIVALENCE AND ITS APPLICATION TO NONLINEAR VISCOELASTIC MATERIALS显示文摘Stress-dependence of the intrinsic time of viscoelastic materials is investigated.The influenceof stress level on the intrinsic time is considered to be similar to that of lemperature,pressure,solvent con-centration,damage and physical aging.The time-lemperature-stress equivalence principle is proposed,byemploying which,the creep curves at different temperatures and stress levels can be shifted into a mastercurve at reference temperature and stress level.Thus the long-term creep behavior of viscoelastic materials ata lower temperature and stress can be predicted from the short-term one at a higher temperature and stress.As an example,the nonlinear creep behavior of high-density polyethylene(HDPE)at room temperature isstudied using the time-temperature-stress equivalence principle presented.Luo Wenbo Yang Ting-Qing An Qunli 2001Acta Mechanica Solida Sinica2001,14,3:6
2Reliability design optimization of composite structures based on PSO together with FEA显示文摘The present work aims to develop a method for reliability-based optimum design of composite structures. A procedure combining particle swarm optimization (PSO) and finite element analysis (FEA) has been proposed. Numerical examples for the reliability design optimization (RDO) of a laminate and a composite cylindrical shell are worked out to demonstrate the effectiveness of the method. Then a design for composite pressure vessels is studied. The advantages and necessity of RDO over the conventional equi-strength design are addressed. Examples show that the proposed method has good stability and is efficient in dealing with the probabilistic optimal design of composite structures. It may serve as an effective tool to optimize other complicated structures with uncertainties.Chen Jianqiao Tang Yuanfu Ge Rui An Qunli Guo Xiwei 2013Chinese Journal of Aeronautics2013,26,2:6
3DeST 3.0:A new-generation building performance simulation platform显示文摘Buildings contribute to almost 30%of total energy consumption worldwide.Developing building energy modeling programs is of great significance for lifecycle building performance assessment and optimization.Advances in novel building technologies,the requirements of high-performance computation,and the demands for multi-objective models have brought new challenges for building energy modeling software and platforms.To meet the increasing simulation demands,DeST 3.0,a new-generation building performance simulation platform,was developed and released.The structure of DeST 3.0 incorporates four simulation engines,including building analysis and simulation(BAS)engine,HVAC system engine,combined plant simulation(CPS)engine,and energy system(ES)engine,connected by air loop and water loop balancing iterations.DeST 3.0 offers numerous new simulation features,such as advanced simulation modules for building envelopes,occupant behavior and energy systems,cross-platform and compatible simulation kernel,FMI/FMU-based co-simulation functionalities,and high-performance parallel simulation architecture.DeST 3.0 has been thoroughly evaluated and validated using code verification,inter-program comparison,and case-study calibration.DeST 3.0 has been applied in various aspects throughout the building lifecycle,supporting building design,operation,retrofit analysis,code appliance,technology adaptability evaluation as well as research and education.The new generation building simulation platform DeST 3.0 provides an efficient tool and comprehensive simulation platform for lifecycle building performance analysis and optimization.Da Yan Xin Zhou Jingjing An Xuyuan Kang Fan Bu Youming Chen Yiqun Pan Yan Gao Qunli Zhang Hui Zhou Kuining Qiu Jing Liu Yan Liu Honglian Li Lei Zhang Hong Dong Lixin Sun Song Pan Xiang Zhou Zhe Tian Wenjie Zhang Ruhong Wu Hongsan Sun Yu Huang Xiaohong Su Yongwei Zhang Rui Shen Diankun Chen Guangyuan Wei Yixing Chen Jinqing Peng 2022Building Simulation2022,15,11:5
4Thermal conductivity of boron nitride reinforced polyethylene composites显示文摘Zhou Wenying Qi Shuhua An Qunli 2007Materials Research Bulletin2007,42,10:1
5Thermal conductivity of boron nitride reinforced polyethylene com- posites显示文摘Zhou Wenying Qi Shuhua An Qunli 2007Mater Res Bull2007,42,10:1
6显示文摘Yang Tingqing ( 杨挺青 ) An Qunli Luo Wenbo 2001Polym Eng Sci2001,41,11:1
7Thermal conductivity of boron nitride reinforced polyethylene composites 显示文摘Zhou Wenying Qi Shuhua An Qunli 2007Material Research Bulletin2007,42,10:1
8Thermal, electrical, and mechanical properties of Si3 N4 filled LLDPE composite 显示文摘An Qunli Qi Shuhua Zhou Wenying 2009Polymer Composites2009,30,7:1
9Thermal conductivity of boron nitride reinforced polyethylene composites显示文摘Wenying Zhou Shuhua Qi Qunli An Hongzhen Zhao Nailiang Liu 2006Materials Research Bulletin2006,,10:1
10Thermal, electrical, and mechanicalp roperties of Si3N4 filled LLDPE composite 显示文摘An Qunli Qi Shuhua Zhou Wenying 2009Polym Compos2009,30,7:1
11Thermal conductivity of boron nitride reinforced polyethylene composites显示文摘Wenying Zhou Shuhua Qi Qunli An 2007Materials Research Bulletin2007,42,:1
12Thermal conductivity of boron nitride reinforced polyethylene composites 显示文摘ZHOU Wenying QI Shuhua AN Qunli 2007Mater Res Bull2007,42,10:1
13Adaptive grouped paired comparison:theory and selection of seeds显示文摘在主观声音质量评估基于配对的比较方法,时间费用与样品的数字的平方成长,它做样品的大数量的评估困难。一个适应组织配对的比较(AGPC ) 图案被建议极大地减少,并且当不适当的参考取样时,避免精确的减小主观比较测试的时间要求和困难被改编种子在普通组织配对的比较选择。数学理论和实现方法被给,包括经验的公式。它从计算机模拟和建议 AGPC 方法的结果在对从常规配对的比较获得的样品和那些的真优点的好同意的主观声音质量评估被显示出。HUANG Yu CHEN Ke'an YAN Liang WU Qunli 2009Chinese Journal of Acoustics2009,28,4:0
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