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8篇 您的检索式:作者名="CUI Qiliang"
    题名 作者 年代 出处 被引量
1Biodiversity of polycyclic aromatic hydrocarbon-degrading bacteria from deep sea sediments of the Middle Atlantic Ridge显示文摘CUI Zhisong LAI Qiliang DONG Chunming 2008Environmental Microbiology2008,10,8:1
2Formation and growth mechanism of ripple-like A1N nanowires 显示文摘Longhai Shen Xuefei Li Qiliang Cui 2010Appl Phys A2010,99,1:1
3High pressure-temperature Brillouin study of liquid water:Evidence of the structureal transition from low-density water to high density water显示文摘 Qiliang Cui Zhi He Tian Cui Jian Zhang Qiang Zhou Guangtian Zou 2005The Journal of Chemical Physics2005,123,17:1
4Pressure-Induced Structural Transitions of the Zinc Sulfide Nano-particles with Different Sizes显示文摘有 10 nm 和 5 nm 的平均尺寸的 ZnS nano粒子被制作bysol胶化方法,和他们的导致压力的阶段转变被精力在原处在一个 diamondanvil 房间检验从周围的压力的散X光检查衍射( EDXD )到 35.0 GPa.From theobtained interplanar 间距数据,体积压缩比率在 differentpressures 被导出,然后体积模量和它的压力衍生物被适合到 theMurnaghan equation.It 获得两个都被发现那 ZnSYuewu PAN Jie YU Zhan HU Hongdong LI Qiliang CUI Guangtian ZOU 2007Journal of Materials Science & Technology2007,23,2:1
5An investigation on the pressure-induced phase transition of nanocrystal ZnS显示文摘 Qu Shenchun Cui Qiliang Zhang Weiwei Liu Xiezhe Liu Bingbing Gao Chunxiao Zou Guangtian 2002Journal of Physics: Condensed Matter2002,14,:1
6Theoretical Model and Experimental Research on Friction and Torque Characteristics of Hydro-viscous Drive in Mixed Friction Stage显示文摘The hydro-viscous drive(HVD)has been widely used in fan transmission in vehicles,fans,and scraper conveyors for step-less speed regulation or soft starting.In the mixed friction stage,the contact,friction,and torque characteristics of friction pairs are very complex and change at any time.The characteristics of the frictional and hydrodynamic lubrication states were studied in order to calculate and predict the friction and torque characteristics of the friction pairs in the mixed friction stage.The fluid torque was calculated by applying the average shear stress model and the load-carrying capacity of asperity was determined on the basis of the fractal contact theory.In addition,the contact friction coefficient of the friction pairs was taken into consideration and measured by using the MM1000-Ⅲfriction and wear testing machine.The asperity friction torque and total torque in the mixed friction stage were obtained and finally,the test rig for the torque characteristics was set up.The results show that the contribution to the total torque is shared by the oil film and the asperity friction.The friction coefficient decreases sharply at first and then increases with a change in the relative rotational speed,following the Stribeck curve closely,and the contact frictional coefficient slowly decreases with increase in the pressure between the friction pairs.The torque between the friction pairs is provided by the asperity friction,and the torque due to the oil film reduces to zero.When the thickness of the oil film is small,a major contribution to the total torque is due to the asperity friction.The total torque also increases with the decrease in the film thickness ratio.Therefore,by theoretical analysis and experimental verification,the torque of the friction pairs in the mixed friction stage can be accurately calculated using the average shear stress model and asperity friction torque model.Hongwei Cui Qiliang Wang Zisheng Lian Long Li 2019Chinese Journal of Mechanical Engineering2019,32,5:1
7Ferroelectric Phase Transition in Nanocrystalline Lead Zirconatitanate System by Raman Scattering显示文摘The Raman spectra of PbZr_(0.3)Ti_(0.7)O_(3) for different grain size as well as at high temperature and high pressure have revealed that its structure is transformed from tetragonal to quasi-cubic phase with decreasing grain size.The phase transition temperature drops down to a lower temperature and the pressure-induced phase transition can be correlated with the diffuse phase transition.MENG Jinfang ZOU Guangtian LI Jiangping CUI Qiliang WANG Xiaohui ZHAO Muyu 1994Chinese Physics Letters1994,11,6:0
8Grading Evaluation and Ranking of CO_(2) Sequestration Capacity in Place(CSCIP) in China’s Major Oil Basins:Theoretical,Effective,Practical and CCUS-EOR显示文摘Because it is necessary to focus on differences in regional oil reservoirs and determine the priority of the CCUSEOR(Carbon capture,utilization,and storage-enhanced oil recovery) deployment under China’s net-zero CO_(2) emission target,systematic and regional evaluations of CO_(2) sequestration capacity in major oil basins are needed considering the geofluid properties―carbon sequestration capacity in place(CSCIP)―where the ’in place’ indicates actual geological formation conditions underground,e.g.,formation temperature and pressure.Therefore,physical properties of geofluids at different depths with different geologic temperatures and pressure conditions are considered for the CO_(2) sequestration capacity evaluation in place,including shallow(800–2000 m),medium(2000–3500 m),deep(3500–4500 m) and ultra-deep(4500–8000 m) depth intervals.A modified evaluation model with four grading levels is proposed,combining the P-V-T equations of state(EOS) and evaluation equations of the Carbon Sequestration Leadership Forum(CSLF),including theoretical,effective,practical,and CCUS-EOR CSCIP,which is more consistent with geofluid physical properties underground,to make the grading evaluation and ranking of the CSCIP in China’s major oil basins.Then,the grading CSCIP of 29 major oil basins in China was evaluated based on the petroleum resources evaluation results of the Ministry of Natural Resources of China(MNRC) during China’s 13th Five-Year Plan period.According to the grading evaluation results,suggestions for China’s CCUS-EOR prospective regions are given as follows:shallow oil fields of the Songliao Basin in Northeast China,shallow–medium oil fields of the Bohai Bay Basin in East China,medium oil fields of the Zhungeer Basin in West China,and medium oil fields of the Ordos Basin in Central China;all are potential areas for the CCUS-EOR geological sequestration in China’s onshore oil basins.In addition,in China’s offshore oil basins,shallow–medium oil fields of the Bohai Sea and shallow oil fields of the Pearl River Mouth Basin have potential for CCUS-EOR geological sequestration.LI Yaohua WANG Yang SHI Yu YANG Leilei CUI Qiliang BI Caiqin XU Yinbo WANG Qianyou SHAN Yansheng LIU Weibin MIAO Miao WANG Ting 2023Acta Geologica Sinica(English Edition)2023,97,3:0
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