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抑制海上浮式风力机振动的TMD限位策略研究 被引量:7
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作者 杨佳佳 贺尔铭 +1 位作者 姚文旭 熊波 《振动与冲击》 EI CSCD 北大核心 2020年第15期18-24,57,共8页
调谐质量阻尼器(TMD)能有效抑制海上浮式风力机的振动响应。风浪作用下,TMD将产生较大的振幅,和风机结构发生碰撞,严重影响风机结构安全,故必须对TMD进行限位设计。针对此问题,在Barge式风力机机舱中配置TMD,提出了3种TMD限位策略:阻尼... 调谐质量阻尼器(TMD)能有效抑制海上浮式风力机的振动响应。风浪作用下,TMD将产生较大的振幅,和风机结构发生碰撞,严重影响风机结构安全,故必须对TMD进行限位设计。针对此问题,在Barge式风力机机舱中配置TMD,提出了3种TMD限位策略:阻尼限位策略、刚度限位策略及联合限位策略。采用拉格朗日方程,建立TMD行程受限的海上浮式风力机3自由度动力学模型,研究了不同限位策略下TMD的抑振效果。结果表明:采用联合限位策略,可以避免单一限位策略的缺陷,此时,TMD最大行程为7.85 m,对塔顶纵向位移和平台纵摇角标准差的抑制率分别为40.01%和61.78%。 展开更多
关键词 海上浮式风力机 TMD 拉格朗日方程 振动模型 振动控制 限位策略
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Synergy of staggered stacking confinement and microporous defect fixation for high‐density atomic Fe^(Ⅱ)‐N_(4)oxygen reduction active sites 被引量:1
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作者 Menghui Chen Yongting Chen +6 位作者 Zhili Yang Jin Luo Jialin Cai Joey Chung‐Yen Jung Jiujun Zhang Shengli Chen Shiming Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1870-1878,共9页
The development of high‐performance nonprecious metal catalysts(NPMCs)to supersede Pt‐based catalysts for the oxygen reduction reaction(ORR)in polymer electrolyte membrane fuel cells is highly desirable but remains ... The development of high‐performance nonprecious metal catalysts(NPMCs)to supersede Pt‐based catalysts for the oxygen reduction reaction(ORR)in polymer electrolyte membrane fuel cells is highly desirable but remains challenging.In this paper,we present a pyrolysis strategy for spatial confinement and active‐site fixation using iron phthalocyanine(FePc),phthalocyanine(Pc)and Zn salts as precursors.In the obtained carbon‐based NPMC with a hierarchically porous nanostructure of thin‐layered carbon nanosheets,nearly 100%of the total Fe species are Fe^(Ⅱ)‐N_(4) active sites.In contrast,pyrolyzing FePc alone forms Fe‐based nanoparticles embedded in amorphous carbon with only 5.9%Fe^(Ⅱ)‐N_(4) active sites.Both experimental characterization and density functional theory calculations reveal that spatial confinement through the staggeredπ–πstacking of Pc macrocycles effectively prevents the demetallation of Fe atoms and the formation of Fe‐based nanoparticles via aggregation.Furthermore,Zn‐induced microporous defects allow the fixation of Fe^(Ⅱ)‐N_(4) active sites.The synergistic effect of staggered stacking confinement and microporous defect fixation results in a high density of atomic Fe^(Ⅱ)‐N_(4) active sites that can enhance the ORR.The optimal Fe^(Ⅱ)‐N_(4)‐C electro‐catalyst outperforms a commercial Pt/C catalyst in terms of half‐wave potential,methanol toler‐ance,and long‐term stability in alkaline media.This modulation strategy can greatly advance efforts to develop high‐performance NPMCs. 展开更多
关键词 Oxygen reduction reaction Synergy strategy Staggered stacking confinement Microporous defects fixation Fe^(Ⅱ)‐N_(4)
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