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| 1 | Improved Genetic Algorithm for Design Optimization of Truss Structures with Sizing,Shape and Topology Variables显示文摘 | Wenyan Tang Liyong Tong Yuanxian Gu | | 0,,: | 1 |
| 2 | Research on process parameters in a novel drafting system显示文摘 | Gu Wenyan Ge Minqiao | 2009 | Journal of the Textile Institute2009,100,1: | 1 |
| 3 | Disc swirl spinning:a novel approach 显示文摘 | GE Mingqiao GU Wenyan YUAN Minfa | 2007 | Indian Journal of Fibre & Textile Research2007,32,6: | 1 |
| 4 | Disc swirl spinning:A novel approach显示文摘 | Ge Minqiao Gu Wenyan Yuan Minfa | 2007 | Indian Journal of Fibre & Textile Research2007,32,6: | 1 |
| 5 | Research on process parameters in a novel drafting system 显示文摘 | GU Wenyan GE Mingqiao | 2009 | The Journal of The Textile Institute2009,100,1: | 1 |
| 6 | Improved genetic al-gorithm for design optimization of truss structures with sizing,shape and topology variables 显示文摘 | Tang Wenyan Tong Liyong Gu Yuanxian | 2005 | International Journal for Numeri-cal Methods in Engineering2005,62,13: | 1 |
| 7 | Disc swirl spinning: a novel approach 显示文摘 | Ge Mingqiao Gu Wenyan Yuan Minfa | 2007 | Indian Journal of Fibre & Textile Research2007,32,6: | 1 |
| 8 | DISTRIBUTIONS AND HYDROLOGICAL CHARACTERISTICS OF TROPICAL CYCLONE RAINSTORMS AND FLOODS IN CHINA显示文摘Regional distribution of the rainstorms and floods caused and affected by tropical cyclones are described and the geographicla divisions of China are also given in this paper. The hydrological characteristics of tropical cyclone rainstorms and floods are discussed and compared with that on non-tropical cyclones. | Wang Jiaqi Shen Guochang Geng Leihua Gu Wenyan Yao Huiming(Nanjiang Institute of Hydrology and Water Resources, Nanjing 210244People’s Republic of China) | 1996 | Journal of Geographical Sciences1996,6,3: | 1 |
| 9 | Disc swirl spinning:a novel approach显示文摘 | Ge Mingqiao Gu Wenyan Yuan Minfa | 2007 | Indian Journal of Fibre & Textile Research2007,32,6: | 1 |
| 10 | The national multi-center artificial intelligent myopia prevention and control project显示文摘In recent years,the incidence of myopia has increased at an alarming rate among children and adolescents in China.The exploration of an effective prevention and control method for myopia is in urgent need.With the development of information technology in the past decade,artificial intelligence with the Internet of Things technology(AIoT)is characterized by strong computing power,advanced algorithm,continuous monitoring,and accurate prediction of long-term progression.Therefore,big data and artificial intelligence technology have the potential to be applied to data mining of myopia etiology and prediction of myopia occurrence and development.More recently,there has been a growing recognition that myopia study involving AIoT needs to undergo a rigorous evaluation to demonstrate robust results. | Xun Wang Yahan Yang Yuxuan Wu Wenbin Wei Li Dong Yang Li Xingping Tan Hankun Cao Hong Zhang Xiaodan Ma Qin Jiang Yunfan Zhou Weihua Yang Chaoyu Li Yu Gu Lin Ding Yanli Qin Qi Chen Lili Li Mingyue Lian Jin Ma Dongmei Cui Yuanzhou Huang Wenyan Liu Xiao Yang Shuiming Yu Jingjing Chen Dongni Wang Zhenzhe Lin Pisong Yan Haotian Lin Chinese Association of Artificial Intelligence,Medical Artificial Intelligence Branch of Guangdong Medical Association | 2021 | Intelligent Medicine2021,1,2: | 1 |
| 11 | Disc swirl spinning--A novel approach显示文摘 | Mingqiao Ge Wenyan Gu Minfa Yuan | 2007 | Indian Journal of Fibre&Textile Research2007,32,6: | 1 |
| 12 | Gradient carbonyl-iron/carbon-fiber reinforced composite metamaterial for ultra-broadband electromagnetic wave absorption by multi-scale integrated design显示文摘The demand of high-end electromagnetic wave absorbing materials puts forward higher requirements on comprehensive performances of small thickness,lightweight,broadband,and strong absorption.Herein,a novel multi-layer stepped metamaterial absorber with gradient electromagnetic properties is proposed.The complex permittivity and permeability of each layer are tailored via the proportion of carbonyliron and carbon-fiber dispersing into the epoxy resin.The proposed metamaterial is further optimized via adjusting the electromagnetic parameters and geometric sizes of each layer.Comparing with the four-layer composite with gradient electromagnetic properties which could only realize reflection loss(RL)of less than−6 dB in 2.0-40 GHz,the optimized stepped metamaterial with the same thickness and electromagnetic properties realizes less than−10 dB in the relevant frequency range.Additionally,the RL of less than−15 dB is achieved in the frequency range of 11.2-21.4 GHz and 28.5-40 GHz.The multiple electromagnetic wave absorption mechanism is discussed based on the experimental and simulation results,which is believed to be attributed to the synergy effect induced by multi-scale structures of the metamaterial.Therefore,combining multi-layer structures and periodic stepped structures into a novel gradient absorbing metamaterial would give new insights into designing microwave absorption devices for broadband electromagnetic protections. | Qian Zhou Tiantian Shi Bei Xue Shengyue Gu Wei Ren Fang Ye Xiaomeng Fan Wenyan Duan Zihan Zhang Lifei Du | 2023 | International Journal of Minerals,Metallurgy and Materials2023,30,6: | 0 |
| 13 | Long-term outcomes of intraoperative radiotherapy for early-stage breast cancer in China: amulticenter real-world study显示文摘Dear Editor,Intraoperative radiotherapy(IORT)is an accelerated par-tial breast irradiation(APBI)treatment that is accom-plished intraoperatively.Numerous clinical trials indicate that IORT is safe and effective,non-inferior to standard whole-breast external beam radiotherapy(EBRT)for low-risk patients who receive breast-conserving surgery[1-3].Nevertheless,these studies mainly included non-Asians and thus lack adequate evidence to support the value of IORT in Asian patients with breast cancer. | Xin Wang Kexin Feng Wenyan Wang Xiangzhi Meng Jiaqi Liu Yang Yang Yuting Zhong Jingruo Li Shikai Wu Minghui Li Pan Ma Qinfu Feng Hongmei Zeng Yuanting Gu Xiru Li Zhaoqing Fan Xiang Wang | 2022 | Cancer Communications2022,42,3: | 0 |