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Data processing method for aerial testing of rotating accelerometer gravity gradiometer
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作者 QIAN Xuewu TANG Hailiang 《中国惯性技术学报》 EI CSCD 北大核心 2024年第8期743-752,共10页
A novel method for noise removal from the rotating accelerometer gravity gradiometer(MAGG)is presented.It introduces a head-to-tail data expansion technique based on the zero-phase filtering principle.A scheme for det... A novel method for noise removal from the rotating accelerometer gravity gradiometer(MAGG)is presented.It introduces a head-to-tail data expansion technique based on the zero-phase filtering principle.A scheme for determining band-pass filter parameters based on signal-to-noise ratio gain,smoothness index,and cross-correlation coefficient is designed using the Chebyshev optimal consistent approximation theory.Additionally,a wavelet denoising evaluation function is constructed,with the dmey wavelet basis function identified as most effective for processing gravity gradient data.The results of hard-in-the-loop simulation and prototype experiments show that the proposed processing method has shown a 14%improvement in the measurement variance of gravity gradient signals,and the measurement accuracy has reached within 4E,compared to other commonly used methods,which verifies that the proposed method effectively removes noise from the gradient signals,improved gravity gradiometry accuracy,and has certain technical insights for high-precision airborne gravity gradiometry. 展开更多
关键词 airborne gravity gradiometer data processing band-passing filter evaluation function
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The internal circulations on internal mass transfer rate of a single drop in nonlinear uniaxial extensional flow
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作者 Anjun Liu Jie Chen +3 位作者 Meng Guo Chengmin Chen Meihong Yang Chao Yang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第7期51-60,共10页
The internal flow of a droplet in the nonlinear extensional flow field will exhibit more than two internal circulations with the variation of nonlinear intensity(E).In this paper,the effect of positions and sizes of i... The internal flow of a droplet in the nonlinear extensional flow field will exhibit more than two internal circulations with the variation of nonlinear intensity(E).In this paper,the effect of positions and sizes of internal circulations on internal mass transfer rate of a single spherical droplet in a nonlinear extensional flow field is studied and compared with that in a linear extensional flow field.The simulation results show that when E≥0,there are two symmetrical internal circulations in the droplet,which is the same with that in a linear extensional flow.The limit value of mass transfer rate Sh is 15,which is equal to that in a linear extensional flow,no matter how large E is.When E≤-3/7,the number of internal flow circulation of a droplet increase to four and the transfer rate Sh increases.When E=-1,the maximum internal transfer rate Sh equals 30 which is twice of that in a linear extensional flow.The generation of new flow circulations in droplets and the circulation positions will enhance mass transfer when E≤-3/7,which provides a new idea for enhancing the internal mass transfer rate of droplets. 展开更多
关键词 Internal mass transfer Nonlinear extensional flow field Spherical droplet Internal circulations
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Amorphous Ru nanoclusters onto Co‐doped 1D carbon nanocages enables efficient hydrogen evolution catalysis 被引量:8
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作者 Wenxiu Yang Weiyu Zhang +4 位作者 Rui Liu Fan Lv Yuguang Chao Zichen Wang Shaojun Guo 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第1期110-115,共6页
The development of high-performance electrocatalysts for hydrogen evolution reaction(HER)is of great significance for green,sustainable,and renewable energy conversion.Herein,we report the synthesis of amorphous Ru cl... The development of high-performance electrocatalysts for hydrogen evolution reaction(HER)is of great significance for green,sustainable,and renewable energy conversion.Herein,we report the synthesis of amorphous Ru clusters on Co-doped defect-rich hollow carbon nanocage(a-Ru@Co-DHC)as an efficient electrocatalyst for HER in the basic media.Due to the advantages such as high surface area,rich edge defect,atomic Co doping and amorphous Ru clusters,the as-made a-Ru@Co-DHC displays an efficient HER performance with a near-zero onset overpotential,a low Tafel slope(62 mV dec^(−1)),a low overpotential of 40 mV at 10 mA cm^(−2) and high stability,outperforming the commercial Ru nanocrystal/C,commercial Pt/C,and other reported Ru-based catalysts.This work provides a new insight into designing new metal doped carbon nanocages catalysts supported by amorphous nanoclusters for achieving the enhanced electrocatalysis. 展开更多
关键词 Amorphous Ru cluster Single atom Defect-rich carbon Hydrogen evolution reaction ELECTROCATALYSIS
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Ultrasmall copper-based clusterzymes ameliorate Achilles tendinopathy by inhibiting acute oxidative stress
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作者 Xuzhuo Chen Yi Du +7 位作者 Yazi Huang Xianhao Zhou Xinru Xie Chang Li Chen Zhao Fengrong Dai Xijiao Yu Shanyong Zhang 《Nano Research》 SCIE EI CSCD 2024年第6期5374-5389,共16页
Tendinopathy is a prevalent musculoskeletal disorder,accounting for over 30%of musculoskeletal lesions.However,current therapeutic strategies for tendinopathy are limited and often yield unsatisfactory clinical outcom... Tendinopathy is a prevalent musculoskeletal disorder,accounting for over 30%of musculoskeletal lesions.However,current therapeutic strategies for tendinopathy are limited and often yield unsatisfactory clinical outcomes.Therefore,there is a critical need to explore novel therapeutic approaches with minimal side effects for tendinopathy and its early lesions.In this study,we successfully designed and synthesized a copper(I)-based nanocluster,named Cu_(11),which possesses remarkable enzyme-like and ROS-scavenging activities.This unique combination of properties qualifies Cu_(11)as an attractive anti-inflammatory and anti-ROS agent.The Cu_(11)clusterzymes specifically target mitochondria,effectively scavenging excessive reactive oxygen species(ROS)and reducing oxidative stress.Furthermore,Cu_(11)clusterzymes inhibit the activation of key signaling pathways involved in inflammation,namely tumor necrosis factor(TNF),mitogen-activated protein kinase(MAPK),and nuclear factor(NF)-κB,leading to a decrease in the release of proinflammatory cytokines.Excitingly,our in vivo experiments using a collagenase-induced acute Achilles tendinopathy model demonstrated that Cu_(11)clusterzymes effectively alleviate inflammation and oxidative stress,without causing systemic toxicity.This study highlights the potential of copper-based clusterzymes as therapeutic agents for the treatment of Achilles tendinopathy and other inflammatory diseases.The unique enzyme-like and ROS-scavenging activities of Cu_(11)make it a promising candidate for further development and clinical translation. 展开更多
关键词 NANOCLUSTERS clusterzymes oxidative stress TENDINOPATHY reactive oxygen species(ROS)
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