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基于模型修正理论和频响函数模式置信准则的简支梁损伤动力评估方法 被引量:8
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作者 战家旺 李明 +1 位作者 卢洋 闫宇智 《土木工程学报》 EI CSCD 北大核心 2017年第8期49-58,97,共11页
提出了一种基于频响函数模式置信准则的改进模型修正方法,用以识别各部位的损伤指数,从而对简支梁的损伤进行定量评估。加工制作了4片模型简支钢梁,用切割截面的方式模拟了损伤,进行了动力测试,并利用所提方法进行了损伤识别。简支钢梁... 提出了一种基于频响函数模式置信准则的改进模型修正方法,用以识别各部位的损伤指数,从而对简支梁的损伤进行定量评估。加工制作了4片模型简支钢梁,用切割截面的方式模拟了损伤,进行了动力测试,并利用所提方法进行了损伤识别。简支钢梁数值模拟和模型试验结果表明:利用相邻测点间频响函数模式置信准则指数构造目标函数时,可有效增加识别变量的个数;第1阶频率和第2阶频率之间的区段内频响函数对损伤灵敏度较高,可用SAC指数计算和简支梁损伤识别;所提损伤评估方法对测试系统误差和噪声不敏感,可实现对多个位置损伤的同步定位和定量识别;在传感器数量有限的情况下,采用分步识别法可以实现对损伤位置的逐步接近和损伤程度的精细化识别。 展开更多
关键词 简支梁 频响函数 模式置信准则 损伤评估 有限元模型修正 模型试验
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Selectivity of CO_(2)reduction reaction to CO on the graphitic edge active sites of Fe-single-atom and dual-atom catalysts:A combined DFT and microkinetic modeling
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作者 Ahmad Nuruddin Adhitya Gandaryus Saputro +4 位作者 Arifin Luthfi Maulana Febdian Rusydi Fiki Taufik Akbar Hadi Teguh Yudistira Hermawan Kresno Dipojono 《Carbon Resources Conversion》 EI 2024年第1期21-31,共11页
We study the carbon dioxide reduction reaction(CO_(2)RR)activity and selectivity of Fe single-atom catalyst(Fe-SAC)and Fe dual-atom catalyst(Fe-DAC)active sites at the interior of graphene and the edges of graphitic n... We study the carbon dioxide reduction reaction(CO_(2)RR)activity and selectivity of Fe single-atom catalyst(Fe-SAC)and Fe dual-atom catalyst(Fe-DAC)active sites at the interior of graphene and the edges of graphitic nanopore by using a combination of DFT calculations and microkinetic simulations.The trend of limiting potentials for CO_(2)RR to produce CO can be described by using either the adsorption energy of COOH,CO,or their combination.CO_(2)RR process with reasonable reaction rates can be achieved only on the active site configurations with weak tendencies toward CO poisoning.The efficiency of CO_(2)RR on a catalyst depends on its ability to suppress the parasitic hydrogen evolution reaction(HER),which is directly related to the behavior of H adsorption on the catalyst’s active site.We find that the edges of the graphitic nanopore can act as potential adsorption sites for an H atom,and in some cases,the edge site can bind the H atom much stronger than the main Fe site.The linear scaling between CO and H adsorptions is broken if this condition is met.This condition also allows some edge active site configurations to have their CO_(2)RR limiting potential lower than the HER process favoring CO production over H2 production. 展开更多
关键词 CO_(2)RR FexNy active site fe-sac Fe-DAC Graphitic edges DFT Microkinetic
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