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Experimental investigation on single person's jumping load model 被引量:2
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作者 Chen Jun Wang Haoqi Wang Ling 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第4期703-714,共12页
This paper presents a modified half-sine-squared load model of the jumping impulses for a single person. The model is based on a database of 22,921 experimentally measured single jumping load cycles from 100 test subj... This paper presents a modified half-sine-squared load model of the jumping impulses for a single person. The model is based on a database of 22,921 experimentally measured single jumping load cycles from 100 test subjects. Threedimensional motion capture technology in conjunction with force plates was employed in the experiment to record jumping loads. The variation range and probability distribution of the controlling parameters for the load model such as the impact factor, jumping frequency and contact ratio, are discussed using the experimental data. Correlation relationships between the three parameters are investigated. The contact ratio and jumping frequency are identified as independent model parameters, and an empirical frequency-dependent function is derived for the impact factor. The feasibility of the proposed load model is established by comparing the simulated load curves with measured ones, and by comparing the acceleration responses of a single-degree-of-freedom system to the simulated and measured jumping loads. The results show that a realistic individual jumping load can be generated by the proposed method. This can then be used to assess the dynamic response of assembly structures. 展开更多
关键词 jumping loads three dimensional motion capture technology half-sine-squared model contact ratio impact factor
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Recent advances,challenges,and perspectives on carbon capture
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作者 Shihan Zhang Yao Shen +11 位作者 Chenghang Zheng Qianqian Xu Yifang Sun Min Huang Lu Li Xiongwei Yang Hao Zhou Heliang Ma Zhendong Li Yuanhang Zhang Wenqing Liu Xiang Gao 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2024年第6期75-104,共30页
Carbon capture,utilization and storage(CCUS)technologies play an essential role in achieving Net Zero Emissions targets.Considering the lack of timely reviews on the recent advancements in promising CCUS technologies,... Carbon capture,utilization and storage(CCUS)technologies play an essential role in achieving Net Zero Emissions targets.Considering the lack of timely reviews on the recent advancements in promising CCUS technologies,it is crucial to provide a prompt review of the CCUS advances to understand the current research gaps pertained to its industrial application.To that end,this review first summarized the developmental history of CCUS technologies and the current large-scale demonstrations.Then,based on a visually bibliometric analysis,the carbon capture remains a hotspot in the CCUS development.Noting that the materials applied in the carbon capture process determines its performance.As a result,the state-of-the-art carbon capture materials and emerging capture technologies were comprehensively summarized and discussed.Gaps between state-of-art carbon capture process and its ideal counterpart are analyzed,and insights into the research needs such as material design,process optimization,environmental impact,and technical and economic assessments are provided. 展开更多
关键词 Carbon capture utilization and storage Visualization analysis Research hotspots and trends CO_(2)capture technology
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An anti-drone device based on capture technology
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作者 Yingzi Chen Zhiqing Li +3 位作者 Longchuan Li Shugen Ma Fuchun Zhang Chao Fan 《Biomimetic Intelligence & Robotics》 2022年第3期43-49,共7页
In this paper,we design a device based on capture technology to solve the problems caused by hacking drones.We introduce the design,simulation,control scheme,and implementation of a capture device.A protective cover i... In this paper,we design a device based on capture technology to solve the problems caused by hacking drones.We introduce the design,simulation,control scheme,and implementation of a capture device.A protective cover is designed to prevent the capture net from scattering.A high-power driver is selected to drive the motor motion simultaneously,which ensures the simultaneity of the surrounding six launch mechanisms.Finally,we conduct experiments to confirm the design feasibility.After capturing the target,we conduct a pull-off force test to confirm the stability of the capture net.Compared to the existing capture method,the proposed device is adjustable,rapid,reliable,environmentally friendly,and can capture the target without damage. 展开更多
关键词 Hacking drone Anti-drone Nondestructive Capture technology
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