MICROSCOPIC

作品数:596被引量:878H指数:12
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相关领域:理学医药卫生更多>>
相关作者:邓红卫宾峰周科平李斌李杰林更多>>
相关机构:中南大学东北师范大学中北大学华东理工大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金国家教育部博士点基金更多>>
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Improved STCA Model for Multi-Lane Using Driving Guidance under CVIS
《Computer Modeling in Engineering & Sciences》2022年第10期67-92,共26页Xun Li Wenzhe Ma Zhengfan Zhao Muhammad Bashir Wenjie Wang Xiaohua Wang 
supported in part by the National Natural Science Foundation of China(No.51905405);Basic Research Program of Natural Science of Shaanxi Province(No.2022JM-407);Guiding Program of Science and Technology of China Textile Industry Federation(No.2020106).
In a multi-lane area,the increasing randomness of lane changes contributes to traffic insecurity and local traffic flow instability.A study on safe lane shifting activity that focuses on threat assessment under real-t...
关键词:Traffic engineering microscopic traffic flow model cooperative vehicle infrastructure system(CVIS) cellular automaton model lane changing 
Flocculation of Ulva microscopic propagules using modified clay:a mesocosm experiment
《Journal of Oceanology and Limnology》2020年第4期1283-1291,共9页LI Jing SONG Xiuxian FAN Xin YU Zhiming 
the AoShan Technological Innovation Program from Qingdao National Laboratory for Marine Science and Technology(No.2016ASKJ02-1);the Taishan Scholars Climbing Program of Shandong Province of 2019;the Marine S&T Fund of Shandong Province for Pilot National Laboratory for Marine Science and Technology(Qingdao)(No.2019SDKJ0504-2).
Microscopic propagules of Ulva species(UMPs)spread on Subei Shoal are believed to play a significant role in the formation of the Yellow Sea green tide.Previous laboratory and ship-based studies indicated that modifie...
关键词:green tide ULVA modified clay microscopic propagules 
Advance in quality assessment of Chinese materia medica using microscopic and morphological methods被引量:3
《Chinese Journal of Natural Medicines》2017年第9期653-663,共11页MIAO Xiao-Su CUI Qing-Yu WANG Zhao-Yi LIU Xiao-Na ZHAO An-Bang QIAO Yan-Jiang WU Zhi-Sheng 
financially supported by Beijing Nova Program of China(No.xx2016050);Science Fund for Distinguished Young Scholars in BUCM(No.2015-JYB-XYQ-003)
Quality evaluation plays a vital role in ensuring safety and effectiveness of Chinese materia medica(CMM). Microscopic and morphological technologies can be used to distinguish CMM's characteristics, such as shape, si...
关键词:Chinese materia medica Micro-technology Colorimeter Texture analyzer 
Study of Soil-Water Characteristic Curve Using Microscopic Spherical Particle Model被引量:22
《Pedosphere》2012年第1期103-111,共9页YANG Song LU Ting-Hao 
Supported by the National Natural Science Foundation of China (No. 50979028);the Program of the Chinese Ministry of Water Resources (No. 200801065)
When variations occur in the water content or dry bulk density of soil,the contact angle hysteresis will affect the soil-water characteristic curve(SWCC).The occurrence of the contact angle hysteresis can be divided i...
关键词:connecting liquid bridge contact angle hysteresis dry bulk density physical model 
Computer Simulation of Microscopic Stress Distribution in Complex Microstructure Using a Phase Field Model被引量:1
《Journal of Shanghai Jiaotong university(Science)》2011年第3期291-295,共5页UEHARA Takuya 
Microscopic stress distribution in a metallic material which has complex microstructure is simulated using a phase field model.The fundamental equations which take into account the coupling effects among phase transfo...
关键词:phase field model MICROSTRUCTURE phase transformation residual stress computer simulation 
Vegetation reconstruction of Bronze Age by using microscopic structure of charcoals被引量:6
《Chinese Science Bulletin》2002年第23期2014-2017,2030,共5页CUI Haiting LI Yiyin HU Jinming YAO Xishen LI Yang 
This work was supported by the National Natural Science Foundation of China (Grant No. 49831008).
The microscopic structure of charcoals was determined in two sites of Bronze Age, Chifeng area by using the scanning electronic microscope. The results showed that these charcoals are all timbers of Mongolian oak (Que...
关键词:charcoals MICROSCOPIC STRUCTURE VEGETATION RECONSTRUCTION BRONZE Age. 
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