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13篇 您的检索式:作者名="YanChao Hu"
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1Advances in Cloud Physics and Weather Modification in China显示文摘The capabilities of cloud-resolving numerical models, observational instruments and cloud seeding have improved greatly over recent years in China. The subject of this review focuses on the main progresses made in China in the areas of cloud modeling, field observations, aerosol–cloud interactions, the effects of urbanization on cloud and precipitation, and weather modification.Well-equipped aircraft and ground-based advanced Doppler and polarized radars have been rapidly applied in cloudseeding operations. The combined use of modern techniques such as the Global Positioning System, remote sensing, and Geographical Information Systems has greatly decreased the blindness and uncertainties in weather-modification activities.Weather-modification models based on state-of-the-art cloud-resolving models are operationally run at the National Weather Modification Centre in China for guiding weather-modification programs.Despite important progress having been made, many critical issues or challenges remain to be solved, or require stronger scientific evidence and support, such as the chain of physical events involved in the effects induced by cloud seeding. Current important progresses in measurements and seeding techniques provide the opportunity and possibility to reduce these deficiencies. Long-term scientific projects aimed at reducing these key uncertainties are extremely urgent and important for weather-modification activities in China.GUO Xueliang FU Danhong LI Xingyu HU Zhaoxia LEI Henchi XIAO Hui HONG Yanchao 2015Advances in Atmospheric Sciences2015,32,2:16
2Urotensin Ⅱ promotes monocyte chemoattractant protein-1 expression in aortic adventitial fibroblasts of rat显示文摘Zhang Yonggang Bao Shilin Kuang Zejian Ma Yanjun Hu Yanchao Mao Yanyan 2014Chinese Medical Journal2014,,10:7
3Cost-benefit analysis of China’s Action Plan for Air Pollution Prevention and Control显示文摘China’s rapid economic growth has caused severe air pollution and public health problems.Therefore,the Chinese government launched the Action Plan for Air Pollution Prevention and Control(hereinafter referred to as the“Air Plan”)in 2013-2017 to improve air quality and safeguard public health.In this study,an analytical framework for a cost-benefit analysis applicable to China was constructed,and the costs and benefits of the implementation of the“Air Plan”in 30 cities and provinces in China from 2013 to 2017 were evaluated.Results show that the total cost of implementation of the“Air Plan”is 1.6511 trillion RMB.The benefits of air quality improvement were determined to be 2.4691 trillion RMB through the willingness-to-pay method to calculate the economic loss of premature deaths.The net benefit related to the implementation of the“Air Plan”was 818 billion RMB.The public health benefit of air quality improvement was 1.5 times the cost of the nationwide implementation of the“Air Plan”.At the provincial level,net benefits that reach 279.3 billion RMB were the highest in Guangdong,whereas the benefit-cost ratio,where the benefit was 5.5 times the cost,was the highest in Fujian.Estimations in this study can serve as a reference for China in formulating similar environmental policies and implementing the “3-year Plan to Defend the Blue Sky”.In addition,these estimations have practical significance for advancing the long-term effective mechanisms of the cost-benefit analysis of China5s environmental policies.Jing ZHANG Hongqiang JIANG Wei ZHANG Guoxia MA Yanchao WANG Yaling LU Xi HU Jia ZHOU Fei PENG Jun BI Jinnan WANG 2019Frontiers of Engineering Management2019,6,4:4
4Challenges and strategies in high-accuracy manufacturing of the world’s largest SiC aspheric mirror显示文摘In the process of manufacturing the world’s largest silicon carbide(SiC)aspheric mirror,the primary difficulties are mirror blank preparation,asphere fabrication,and testing,as well as cladding and coating.Specifically,the challenges include the homogeneity of the complicated structure casting,accuracy and efficiency of the fabrication process,print-through effect,fidelity and precision of test procedure,stress and denseness of cladding process,the dynamic range of interferometric measurement,and air turbulence error due to the long optical path.To break through such a barrier of difficulties,we proposed the water-soluble room temperature vanishing mold and gel casting technology,homogeneous microstructure reaction-formed joint technology,nano-accuracy efficient compound fabrication,gravity unloading technology,high-denseness low-defect physical vapor deposition(PVD)Si-cladding technology,test data fusion method,and time-domain averaging method,etc.Based on the proposed technologies and methods,we have accomplished the world’s largest SiC aspheric mirror with a size of φ4.03 m.The impressive performance of the SiC aspheric mirror is validated by the characteristics of the fabricated SiC aspheric mirror.The aerial density of the SiC blank is less than 120 kg/m^(2),surface shape test accuracy is better than 6 nm RMS,thickness inhomogeneity of the cladding layer is less than 5%,and the final surface figure error and roughness are 15.2 nm RMS and 0.8 nm RMS,respectively.Xuejun Zhang Haixiang Hu Xiaokun Wang Xiao Luo Ge Zhang Wenxing Zhao Xiaoyi Wang Zhenyu Liu Ling Xiong Erhui Qi Congcong Cui Yanchao Wang Yingjie Li Xu Wang Longxiang Li Yang Bai Qiang Cheng Zhiyu Zhang Ruigang Li Wa Tang Xuefeng Zeng Weijie Deng Feng Zhang 2022Light(Science & Applications)2022,11,12:3
5A branched dihydrophenazine-based polymer as a cathode material to achieve dual-ion batteries with high energy and power density显示文摘Organic electrode materials have exhibited good electrochemical performance in batteries,but their voltages and rate capabilities still require improvement to meet the increasing demand for batteries with high energy and power density.Herein,we design and synthesize a branched dihydrophenazine-based polymer(p-TPPZ)as a cathode material for dual-ion batteries(DIBs)through delicate molecular design.Compared with the linear dihydrophenazine-based polymer(p-DPPZ,with a theoretical capacity of 209 mAh g^(−1)),p-TPPZ possessed a higher theoretical capacity of 233 mAh g^(−1)and lower highest occupied molecular orbital energy levels,which resulted in a high actual capacity(169.3 mAh g^(−1)at 0.5 C),an average discharge voltage of 3.65 V(vs.Li+/Li)and a high energy density(618.2 Wh kg^(−1),based on the cathode materials).The branched structure of p-TPPZ led to a larger specific surface area than that of p-DPPZ,which was beneficial for the electrolyte infiltration and fast ionic transport,contributing to the high power density.Due to the fast reaction kinetics,even at a power density of 23,725 W kg^(−1)(40 C),the energy density still reached 474.5 Wh kg^(−1).We also made a detailed investigation of the p-TPPZ cathode’s charge storage mechanism.This work will stimulate the further molecular design to develop organic batteries with both high energy and power density.Shuaifei Xu Huichao Dai Shaolong Zhu Yanchao Wu Mingxuan Sun Yuan Chen Kun Fan Chenyang Zhang Chengliang Wang Wenping Hu 2021eScience2021,1,1:2
6Direct radial sus- pension force control algorithm of bearingless synchronous reluctance motor 显示文摘Hu Weichao Li Yanchao Zhu Huangqiu 2011Advance Electrical and Electronics Engineering2011,87,:1
7Understanding the roles of Ti on the structure and electrochemical performances of Li2Ru1-xTixO3 cathode materials for Li-ion batteries显示文摘The lattice doping has been widely used to improve the electrochemical performances of Li-rich cathode materials but the roles of the introduced foreign atoms are still not very clear.Herein,a series of Li2Ru1-xTixO3 solid solutions have been synthesized and the roles of Ti doping on the structural and electrochemical properties of Li2RuO3 have been comprehensively investigated.The Rietveld refinement exhibits that the interlayer spacing gradually shortens with increasing Ti content.This shrinkage is favorable to the layered structure stability but increases the lithium diffusion barrier.Galvanostatic measurements show that Li2Ru0.8Ti0.2O3 possesses the best cyclability with 196.9 and 196.1 m Ah g-1for charge and discharge capacity retaining after 90 cycles,respectively.Cyclic voltammetry scanning indicates that Ti dopant promotes the formation of more peroxo-or superoxo-like species but reduces the initial coulumbic efficiency.Results of electrochemical impedance spectroscopy display that Ti doping reduces the charge transfer impedance,which facilitates the lithium-ion diffusion across the electrolyteelectrode interface and improves the electronic conductivity.Li2Ru0.8Ti0.2O3exhibits the best electrochemical performance owing to the balance among all the factors discussed above.This study also offers some new insights into optimizing the electrochemical performances of Li-rich cathode materials through the lattice doping.Hu Zhao Yanchao Shi Li Xue Yingzhi Cheng Zhongbo Hu Xiangfeng Liu 2019Journal of Energy Chemistry2019,28,6:1
8Sarcopenia and gut microbiota alterations in patients with hematological diseases before and after hematopoietic stem cell transplantation显示文摘Objective: The aim of this study was to investigate the prevalence of sarcopenia(SP) and its relationship with gut microbiota alterations in patients with hematological diseases before and after hematopoietic stem cell transplantation(HSCT).Methods: A total of 108 patients with various hematological disorders were selected from Peking University People’s Hospital. SP was screened and diagnosed based on the 2019 Asian Sarcopenia Diagnosis Strategy. Physical measurements and fecal samples were collected, and 16S rRNA gene sequencing was conducted. Alpha and beta diversity analyses were performed to evaluate gut microbiota composition and diversity.Results: After HSCT, significant decreases in calf circumference and body mass index(BMI) were observed,accompanied by a decline in physical function. Gut microbiota analyses revealed significant differences in the relative abundance of Enterococcus, Bacteroides, Blautia and Dorea species before and after HSCT(P<0.05). Before HSCT, sarcopenic patients had lower Dorea levels and higher Phascolarctobacterium levels than non-sarcopenia patients(P<0.01). After HSCT, no significant differences in species abundance were observed. Alpha diversity analysis showed significant differences in species diversity among the groups, with the highest diversity in the postHSCT 90-day group and the lowest in the post-HSCT 30-day group. Beta diversity analysis revealed significant differences in species composition between pre-and post-HSCT time points but not between SP groups. Linear discriminant analysis effect size(LEfSe) identified Alistipes, Rikenellaceae, Alistipes putredinis, Prevotellaceae defectiva and Blautia coccoides as biomarkers for the pre-HSCT sarcopenia group. Functional predictions showed significant differences in anaerobic, biofilm-forming and oxidative stress-tolerant functions among the groups(P<0.05).Conclusions: This study demonstrated a significant decline in physical function after HSCT and identified potential gut microbiota biomarkers and functional alterations associated with SP in patients with hematological disorders. Further research is needed to explore the underlying mechanisms and potential therapeutic targets.Boshi Wang Wei Hu Xue Zhang Yanchao Cao Lin Shao Xiaodong Xu Peng Liu 2023Chinese Journal of Cancer Research2023,35,4:0
9β-distribution for Reynolds stress and turbulent heat flux in relaxation turbulent boundary layer of compression ramp显示文摘A challenge in the study of turbulent boundary layers(TBLs) is to understand the non-equilibrium relaxation process after separation and reattachment due to shock-wave/boundary-layer interaction. The classical boundary layer theory cannot deal with the strong adverse pressure gradient, and hence, the computational modeling of this process remains inaccurate. Here, we report the direct numerical simulation results of the relaxation TBL behind a compression ramp, which reveal the presence of intense large-scale eddies, with significantly enhanced Reynolds stress and turbulent heat flux. A crucial finding is that the wall-normal profiles of the excess Reynolds stress and turbulent heat flux obey a β-distribution, which is a product of two power laws with respect to the wall-normal distances from the wall and from the boundary layer edge. In addition, the streamwise decays of the excess Reynolds stress and turbulent heat flux also exhibit power laws with respect to the streamwise distance from the corner of the compression ramp. These results suggest that the relaxation TBL obeys the dilation symmetry, which is a specific form of self-organization in this complex non-equilibrium flow. The β-distribution yields important hints for the development of a turbulence model.YanChao Hu WeiTao Bi ShiYao Li ZhenSu She 2017Science China(Physics,Mechanics & Astronomy)2017,60,12:0
10Beagle Dogs Have Low Susceptibility to Florida Clade 2 H3N8 Equine Avian Influenza显示文摘Dear Editor,Dogs were long considered refractory to influenza viruses until the equine-origin H3N8 canine influenza virus(CIV)was first isolated in the United States of America(U.S.A)in 2004(Crawford et al.2005).Since then,H3N8 CIV of equine-origin strains has been circulating in dogs in the U.S.A.In 2006,another CIV of avian origin H3N2 subtype was isolated from dogs in China(Li et al.2010).Recently,H3N2 CIV strains have become endemic in dog populations in China,South Korea,and North America(Borland et al.2020).Pei Zhou Xiangyu Xiao Xinkai Hu Jie Dong Haoyao Zhang Yanchao Li Shoujun Li 2021Virologica Sinica2021,36,5:0
11Effects of dietary macronutrients and body composition on glucose homeostasis in mice显示文摘As a major health issue,obesity is linked with elevated risk of type 2 diabetes.However,whether disrupted glucose homeostasis is due to altered body composition alone,or whether dietary macronutrients play an additional role,independent of their impact on body composition,remains unclear.We investigated the associations between macronutrients,body composition,blood hormones and glucose homeostasis.We fed C57BL/6N mice 29 different diets with variable macronutrients for 12 weeks.After 10 weeks,intraperitoneal glucose tolerance tests were performed.Generalized linear models were generated to evaluate the impacts of macronutrients,body composition and blood hormones on glucose homeostasis.The area under the glucose curve(AUC)was strongly associated with body fat mass,but not dietary macronutrients.AUC was significantly associated with fasting insulin levels.Six genes from transcriptomic analysis of epididymal white adipose tissue and subcutaneous white adipose tissue were significantly associated with AUC.These genes may encode secreted proteins that play important previously unanticipated roles in glucose homeostasis.Sumei Hu Jacques Togo Lu Wang Yingga Wu Dengbao Yang Yanchao Xu Li Li Baoguo Li Min Li Jianbo Li Guanlin Wang Xueying Zhang Chaoqun Niu Mohsen Mazidi Alex Douglas John R.Speakman 2021National Science Review2021,8,1:0
12Hot deformation behavior and processing map development of AZ110 alloy with and without addition of La-rich Mish Metal显示文摘In order to compare the workability of AZ110 alloy with and without addition of La-rich Mish Metal(MM), hot compression tests were performed on a Gleeble-3500 D thermo-mechanical simulator at the deformation temperature range of 473-623 K and strain rate range of 0.001-1 s-1. The flow stress, constitutive relation, DRX kinetic model, processing map and microstructure characterization of the alloys were investigated. The results show that the flow stress is very sensitive to deformation temperature and strain rate, and the peak stress of AZ110 LC(LC = La-rich MM) alloy is higher than that of AZ110 alloy.The hot deformation behavior of the alloys can be accurately predicted by the constitutive relations. The derived constitutive equations show that the calculated activation energy Q and stress exponent n for AZ110 alloy are higher than the calculated values of AZ110 LC alloy. The analysis of DRX kinetic models show that the development of DRX in AZ110 LC alloy is earlier than AZ110 alloy at the same deformation condition. The processing maps show that the workability of AZ110 LC alloy is significantly more excellent than AZ110 alloy and the microstructures are in good agreement with the calculated results.The AZ110 LC alloys can obtain complete DRX microstructure at high strain rate due to its higher stored energy and weak basal texture.Qiyu Liao Yanchao Jiang Qichi Le Xingrui Chen Chunlong Cheng Ke Hu Dandan Li 2021Journal of Materials Science & Technology2021,,2:0
13Multiple Impact Phenomenon in Impact Hammer Testing:Theoretical Analysis and Numerical Simulation显示文摘As conducting an impact hammer testing during experimental modal analysis,the multiple impact phenomenon must be avoided.It is generally recognized that the multiple impact phenomenon is induced by the tester’s improper operation and can be avoided through more careful operation.This study theoretically and numerically investigates the whole process of the dynamical interaction between the hammer tip and the impacted structure and discovers the intrinsically physical mechanism of the multiple impact phenomenon.The determination of the interacting process comes down to solve two sets of governing differential equations alternately,and the effectiveness of the theoretical analysis is validated by numerical simulations.Four dimensionless parameters governing the interacting process are recognized in the theoretical framework.The critical stiffness ratio for a given impacted location and the critical impacted location for a given stiffness ratio are analytically determined.These results can guide impact hammer testing to avoid the occurrence of multiple impact by suggesting the hammer tip and impacted locations.Junyin Li Ken Lin Yanchao Hu Yuliang Yang Yong Wang Zhilong Huang 2021Acta Mechanica Solida Sinica2021,34,6:0
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