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连锁型自保温混凝土砌块细部结构的优化
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作者 彭玲 马新伟 张玉栋 《河北建筑工程学院学报》 CAS 2012年第4期7-12,共6页
利用复合墙体传热系数的简化计算方法,计算连锁型自保温混凝土砌块墙体的传热系数.分析了该种砌块不同的细部构造尺寸对墙体传热系数的影响,结果表明填充孔洞宽度对墙体传热系数影响最为显著,其次是间肋、中间空气间层宽度.综合考虑工... 利用复合墙体传热系数的简化计算方法,计算连锁型自保温混凝土砌块墙体的传热系数.分析了该种砌块不同的细部构造尺寸对墙体传热系数的影响,结果表明填充孔洞宽度对墙体传热系数影响最为显著,其次是间肋、中间空气间层宽度.综合考虑工程安全和建筑节能设计标准的要求,最终确定了该连锁型自保温混凝土砌块的细部构造尺寸. 展开更多
关键词 连锁型自保温混凝土砌块 细部构造 并串联法 传热系数
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Multi-objective parameter optimization for a single-shaft series-parallel plug-in hybrid electric bus using genetic algorithm 被引量:4
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作者 CHEN Zheng ZHOU LiYan +2 位作者 SUN Yong MA ZiLin HAN ZongQi 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第8期1176-1185,共10页
Recently, the single-shaft series-parallel powertrain of Plug-in Hybrid Electric Bus (PHEB) has become one of the most popu- lar powertrains due to its alterable operating modes, excellent fuel economy and strong ad... Recently, the single-shaft series-parallel powertrain of Plug-in Hybrid Electric Bus (PHEB) has become one of the most popu- lar powertrains due to its alterable operating modes, excellent fuel economy and strong adaptability for driving cycles. Never- theless, for configuring the PHEB with single-shaft series-parallel powertrain in the development stage, it still faces greater challenge than other configurations when choosing and matching the main component parameters. Motivated by this issue, a comprehensive multi-objectives optimization strategy based on Genetic Algorithm (GA) is developed for the PHEB with the typical powertrain. First, considering repeatability and regularity of bus route, the methods of off-line data processing and mathematical statistics are adopted, to obtain a representative driving cycle, which could well reflect the general characteristic of the real-world bus route. Then, the economical optimization objective is defined, which is consist of manufacturing costs of the key components and energy consumption, and combined with the dynamical optimization objective, a multi-objective op- timization function is put forward. Meanwhile, GA algorithm is used to optimize the parameters, for the optimal components combination of the novel series-parallel powertrain. Finally, a comparison with the prototype is carried out to verify the per- formance of the optimized powertrain along driving cycles. Simulation results indicate that the parameters of powertrain com- ponents obtained by the proposed comprehensive multi-objectives optimization strategy might get better fuel economy, meanwhile ensure the dynamic performance of PHEB. In contrast to the original, the costs declined by 18%. Hence, the strat- egy would provide a theoretical guidance on parameter selection for PHEB manufacturers. 展开更多
关键词 multi-objective parameter optimization single-shaft series-parallel powertrain plug-in hybrid electric bus (PHEB) genetic algorithm (GA) driving cycle city bus route
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