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Jiangyun Wang
Wang Jiangyun, Doctor, professor, doctoral supervisorMember, Karamay School District Education and Teaching CommitteeE-mail:wangjy@cup.edu.cn TEL:0990-6633305Educational experience1995-1999 Undergraduate, Zhengzhou University2003-2006 China University of Petroleum (Beijing) Master2006-2009 PhD, China University of Petroleum (Beijing)Work experience2009-2017 Lecturer and Master Supervisor of China University of Petroleum (Beijing) (Chemical Process Machinery)2017-present Associate Professor, Master Supervisor, Karamay Campus, China University of Petroleum (Beijing) (Chemical Process Machinery, Chemical Engineering)2012.2-Aug., Visiting Scholar, Corrosion and MultiPhase Flow Center (ICMT), Ohio University, USATeaching courses1. Engineering Fluid Mechanics, Chemical Fluid Mechanics2. Introduction to Process Equipment and Control Engineering3. Pressure Vessel Safety Management Engineering4. Heterogeneous Separation Technology5. Mechanical Drawing, Computer Drawing6. Environmental Engineering Design and SimulationSeven. Production Practice, Metalworking PracticeResearch direction1. Multiphase flow and process equipment strengthening2. Combustion and heat transfer enhancement3. Multiphase flow and corrosionResearch project1. National Natural Science Youth Fund Project, 21106181, Research on the suppression and performance improvement of asymmetric strong spiral flow in the cyclone separator.2. China Petrochemical Co., Ltd. develops multi-functional deep-bed filter technology for nitrogen removal and phosphorus removal.3. Beijing Low-Carbon Clean Energy Research Institute, numerical simulation analysis and design of multi-phase flow in the polymer devolatilization device.4. Beijing Low-Carbon Clean Energy Research Institute, multi-phase flow reactor distributor and cyclone separator CFD simulation research technology.5. China Special Equipment Testing and Research Institute, NH4HS corrosion rate test.6. Sinopec Science and Technology Project - Technology Development, ZX20180096, a new generation of green low-carbon model heating furnace integrated technology research.7. The horizontal project of Sinopec Shanghai Gaoqiao Petrochemical Co., Ltd., research on the law of oil and gas flow in the settler and the scheme to avoid coking.8. The horizontal project of Qingdao Safety Engineering Research Institute of China Petrochemical Co., Ltd. is a study on the flushing behavior of casing in the fracturing process based on multi-phase flow simulation.9. China University of Petroleum (Beijing) Karamay Campus Scientific Research Launch Project, RCYJ2017B-02-002, Structural Mutation Flow Channel Internal Cavitation-Erosion Collaborative Damage Mechanism.Representative papers Di Wang, Liqiang Sun, Jiangyun Wang, et al. Experimental study of the dynamic characteristics of a cyclone by hot wire/film anemometry: Effects of gas leakage, Separation and Purification Technology, 2020,251:117~365 Zhuwei Gao, Juan Wang, Jiangyun Wang, et al. Analysis of the effect of vortex on the flow field of a cylindrical cyclone separator, Separation and Purification Technology, 2019,211:438~447 Zhuwei Gao, Juan Wang, Jiangyun Wang, et al. Time-frequency analysis of the vortex motion in a cylindrical cyclone separator, Chemical Engineering Journal, 2019,373:1120~1131Major achievements (patents and awards, etc.)Awards:1. New combustion and heat transfer technology of USC ethylene cracking furnace, National Energy Administration, National Energy Science and Technology Progress Award, second prize, 2013, ranked third.2. New combustion and heat transfer technology of USC ethylene cracking furnace, Beijing Municipal People's Government, Beijing Science and Technology Award, second prize, 2012, ranked third.3. Based on the "Excellent Engineer Training Plan" process equipment and control engineering excellent class enterprise production internship teaching reform and practice, China University of Petroleum (Beijing) school-level education reform project, first prize, 2017.4, ranked fourth.4. Construction and practice of chemical and mechanical applied innovative talent training system, the 10th Autonomous Region Higher Education Teaching Achievement Award, third prize, 2019.11, ranking secondPatent:1. Gas-liquid separator for oil and gas well test injection, 201620413309.82. Feed nozzle of catalytic cracking device, 201310545464.63. Porous nozzle for oil and gas well test, 201620935365.84. New connection mode and components between the coarse spin and the top spin in the FCC settler, 201210126277. 5. Double-cone liquid-type gas-liquid separator for oil and gas well test and spraying, 201710292006.46. High-efficiency throttle erosion-resistant needle-type adjustable oil nozzle, 201720538270.77. A cyclone separator, ZL201410800344.08. Steam generator with adjustable pressure and temperature regulation, 201410299278.3
Zhiqi Huang
Huang Zhiqi, Ph.D., Associate Professor, Master Supervisor, Member of China Command and Control Society (CICC), Member of Sichuan Virtual Reality Professional Committee.Educational experience;In 2009, the Doctor degree of test metrology technology and instrument from University of Electronic Science and Technology of China. Main research directions:Wearable computer system architecture, human-computer interaction, wearability, system reliability, AR/VR research.Scientific research and achievements: He has presided over and participated in more than 10 projects of the National 863 Program, the National Nature Foundation, the China-Canada International Cooperation project, the Sino-German Fund project, the national key research and development plan, the final assembly, and the enterprise project. Published SCI, EI source journal papers, applied for a number of national invention patents. In 2014, it organized the Fourth National Wearable Computing Academic Conference and the first China (International) Intelligent Wearable Technology and Industry Forum, and made a special report of the conference. Organized and participated in the Sino-German bilateral Seminar on wearable Computing supported by the Sino-German Science Center in 2010 (Chengdu) and 2011 (Bremen), and made a report on the conference. Guided students to participate in the 12th "Challenge Cup" National College students extracurricular academic science and technology works competition, won the national third prize.Scientific research projects hosted and participated in in recent years:(1) Sub-topic of the national key research and development plan, 2017YFB1002803, mixed presentation of strong realism of audio-visual touch virtual and real registration, Ministry of Science and Technology, 2017-09-2021-09, host;(2) National Natural Science Foundation of China, Surface Project, 62172081, Key Technology and Theoretical Research of Emotional Physiological Perception HMD Interactive Interface in Virtual Environment, 2022-01 to 2025-12, Ranking Second;(3) National key research and development plan topic, 2016YFB1001401, new wearable somatosensory interactive device, 2016-07 to 2020-06, ranked fourth;(4) National Natural Science Foundation of China, surface project, 61572110, based on the mechanism, structure and adaptive algorithm of "movement forge" based on fabric dynamic ECG, 2016-01 to 2019-12, ranked second.In recent years, invention patents have been authorized:[1] Huang Zhiqi, Chen Dongyi, Yang Yanjie; A method and system for predicting displacement frames, 2021-08-03, China, ZL202010015402.4.[2] Huang Zhiqi, Liu Chen, Wang Yongcui; Array haptic stimulation control method, 2021-02-19, China, ZL201910724286.0.[3] Huang Zhiqi, Chen Dongyi, Xiong Fan, Chen Xiao; Wearable Chronic Obstructive Pulmonary Dynamic Detection Chest Strap, 2020-08-11, China, ZL201610444202.4.[4] Huang Zhiqi, Chen Dongyi, Michael Lawo, Xiong Fan, Chen Xiao; Inhibiting Motion Fake Graphene Flexible Brain Capacitive Electrode, 2019-12-03, China, ZL201510847132.2.[5] Huang Zhiqi, Chen Dongyi, Xiong Fan, Chen Xiao; Inhibiting Motion Fake Graphene Flexible Electrocardio Electrode, 2018-10-16, China, ZL201510844138.4.Paper:[1] Yongcui Wang, Zhiqi Huang*, Chen Liu, Wang Pu. Study on the Threshold Characteristics of Human Back Perception for Vibrational Tactile Expression. The 2019 International Symposium on Electronic Engineering and Informatics (ISEEI 2019). June,2019.[2] Du Jingyi, Huang Zhiqi*, Chen Dongyi, Lei Taowei. Research status of vibration tactile coding. Journal of Engineering Science, 2021, 43(9): 1261-1268.[3] Huang, Zhi-Qi;Guo, Feng;Stochastic resonance in a fractional linear oscillator subject to random viscous damping and signal-modulated noise,CHINESE JOURNAL OF PHYSICS,2016,54(1): 69-76[4] Huang, Zhi-Qi;Peng, Ya-Na;Guo, Feng;Stochastic Resonance in the Logistic Growth Model with Time-modulated Correlated Noise, JOURNAL OF THE KOREAN PHYSICAL SOCIETY,2012,61(2):1932-1937
Chao Xu
Xu Chao,Professor, doctoral supervisorTEL:010-61773934E-mail:mechxu@ncepu.edu.cnEducational experience:1998 Bachelor degree in Engineering Thermophysics, Xi 'an Jiaotong University;2004 PhD from Hong Kong University of Science and Technology,Work Experience:2008-2010 Postdoctoral Fellow, University of Connecticut, USAAssociate Professor, Institute of Electrical Engineering, Chinese Academy of Sciences,Since 2013, he has been a professor at North China Electric Power University.Academic part-time:At present, he is a member of the Youth Working Committee of the Heat and Mass Transfer Branch of the Chinese Society of Engineering Thermophysics, a member of the Youth Working Committee of the Chinese Society of Renewable Energy, and a member of the National Solar thermal Power Generation Standardization Technical Committee. He is an associate editor of the SCI journals Science Bulletin and IET Renewable Power Generation. The editorial board members of SCI journal Energies and EI core journal Frontiers in Heat and Ass Transfer won the honor of outstanding Associate Editor of Science Bulletin in 2016.Research direction:Solar thermal utilization, heat storage, electrolysis of water to produce hydrogen, thermochemical to produce hydrogenMain scientific research projects:[1] The project of the National Natural Science Foundation of China, the relationship between the strengthening mechanism of the thermochemical heat storage performance of hydrated salt composite materials and the law of multi-scale heat and mass transfer, 2019-01 to 2022-12, 600,000 yuan[2] Innovation Group Project of the National Natural Science Foundation of China (Core Backbone), Energy Transfer Transformation and Efficient Power System, 2018-01 to 2023-12, 12 million yuan[3] Organization Department of the Central Committee of the Communist Party of China, ** Youth ** Project, 2018-01 to 2020-12, 1.7 million yuan[4] Key research and development plan sub-project of the Ministry of Science and Technology, R&D and demonstration of 10MW advanced compressed air energy storage technology, 2017-07 to 2021-06, 1.01 million yuan[5] National Natural Science Foundation of China ** project, multi-field coupled thermal mass transmission, 2016-01 to 2018-12, 1.5 million yuan[6] Youth Project of the National Natural Science Foundation of China, Research on the Flow and Heat Exchange Process and Their Coupling Mechanism in the Mixed Heat Storage System of Molten Salt Oblique Thermolayer, 2012-01 to 2014-12, 260,000 yuan[7] Chinese Academy of Sciences, Talent Project of Youth Innovation Promotion Association, 2012-01 to 2013-05, 200,000 yuan[8] Ministry of Education, scientific research start-up fund for overseas returnees, research on heat transfer characteristics of molten salt oblique temperature layer mixed heat storage system using phase transformation to fill particles, 2012-06 to 2015-12, 30,000 yuan[9] Ministry of Science and Technology of the People's Republic of China 973 project, large-scale solar thermal power generation system integration and regulation strategy, 2010-01 to 2014-08, 6.03 million yuanPaper:2020[1] Tieying Wang; Tianying Zhang; Guizhi Xu; Chao Xu*; Zhirong Liao; Feng Ye; A new low-cost high-temperature shape-stable phase change material based on coal fly ash and K2CO3, Solar Energy Materials and Solar Cells, 2020, 206: 0-110328. (SCI)[2] Feng Ye; Zhiming Wang; Chao Xu*; Mengdi Yuan; Peng Liu; Woochul Yang;Guicheng Liu*; Mechanism and kinetic study of pulse electrodeposition processof Pt/C catalysts for fuel cells, Renewable Energy, 2020, 145: 514-520. (SCI)[3] Mostafa M. Abd El-Samie; Xing Ju*; Zheyang Zhang; Saad AbdueljabbarAdam; Xinyu Pan; Chao Xu; Three-dimensional numerical investigation of a hybridlow concentrated photovoltaic/thermal system, Energy, 2020, 190: 0-116436. (SCI)2019[4] Quan Wang; Yunyun Xie; Bo Ding; Guoliang Yu; Feng Ye; Chao Xu*; Structure and hydration state characterizations of MgSO4-zeolite 13x compositematerials for long-term thermochemical heat storage, Solar Energy Materialsand Solar Cells, 2019, 200: 0-110047. (SCI)[5] Yuan, Mengdi; Ren, Yunxiu; Xu, Chao*; Ye, Feng; Du, Xiaoze; Characterization and stability study of a form-stable erythritol/expanded graphitecomposite phase change material for thermal energy storage, Renewable Energy,2019, 136: 211-222. (SCI)[6] Han, Xue; Pan, Xinyu; Yang, Hao; Xu, Chao*; Ju, Xing; Du, Xiaoze; Dynamic output characteristics of a photovoltaic-wind-concentrating solar powerhybrid system integrating an electric heating device, Energy Conversion andManagement, 2019, 193: 86-98. (SCI)[7] Ju, Xing; Pan, Xinyu; Zhang, Zheyang; Xu, Chao*; Wei, Gaosheng; Thermal and electrical performance of the dense-array concentrating photovoltaic(DA-CPV) system under non-uniform illumination, Applied Energy, 2019, 250:904-915. (SCI)[8] Ren, Yunxiu; Li, Pengda; Yuan, Mengdi; Ye, Feng; Xu, Chao*; Liu,Zhijian; Effect of the fabrication process on the thermophysical properties ofCa(NO3)2–NaNO3/expanded graphite phase change material composites , SolarEnergy Materials and Solar Cells, 2019, 200: 0-110005. (SCI)
SCHOOL LIFE
19.MAR
Jian Liu
Jian LiuSchool of EngineeringPh.D.ProfessorEnergy Chemical Engineeringliujian@cup.edu.cn Research Areas[1] Oil and Gas Long Distance Pipeline Transportation Technology[2] Oil and gas storage and transportation safety engineering Education & Career2012.10-present, Professor, Doctoral Tutor, School of Science, China University of Petroleum (Beijing);2011.10-2012.10, postdoctoral fellow, Mississippi State University, USA;2010.06-2011.10: Associate Professor, College of Science, China University of Petroleum (Beijing);2008.07-2010.06: Lecturer, School of Chemical Engineering, China University of Petroleum (Beijing);2002.09-2008.06: majored in Chemical Engineering, School of Chemical Engineering, China University of Petroleum (Beijing), master1995.07-2002.08: Engineer, Shandong Dezhou Petrochemical Complex;1991.09-1995.07: Tianjin Institute of Light Industry, majoring in inorganic chemical engineering, undergraduate Representative papers[1] Jixing Liu, Jian Liu*, Zhen Zhao, Yuechang Wei, Weiyu Song. Fe-Beta@CeO2 core-shell catalyst with tunable shell thickness for selective catalytic reduction of NOx with NH3. AIChE Journal, 2017, 63: 5833-5842 [2] Ying Cheng, Jian Liu*, Zhen Zhao, Weiyu Song, Yuechang Wei. Highly efficient and simultaneously catalytic removal of PM and NOx from diesel engines with 3DOM Ce0.8M0.1Zr0.1O2 (M=Mn, Co, Ni) catalysts. Chemical Engineering Science, 2017, 167: 219-228 [3] Liu Jixing, Liu Jian*, Zhao Zhen, Tan Junbin, Wei Yuechang, Song Weiyu. Fe/Beta@SBA-15 core-shell catalyst: Interface stable effect and propene poisoning resistance for NO abatement. AIChE Journal, 2018, 64: 3967-3978 [4] Minjie Zhao, Jianlin Deng, Jian Liu*, Yongheng Li, Jixing Liu, Zhichen Duan, Jing Xiong, Zhen Zhao, Yuechang Wei, Weiyu Song, Yuanqing Sun, Roles of Surface-Active Oxygen Species on 3DOM Cobalt-Based Spinel Catalysts MxCo3-xO4 (M = Zn and Ni) for NOx Assisted Soot Oxidation. ACS Catalysis, 2019, 9: 7548-7567 [5] Zeyu Jiang, Xiangbo Feng, Jianlin Deng, Chi He*, Mark Douthwaite, Yanke Yu, Jian Liu*, Zhengping Hao, Zhen Zhao, Atomic-scale insights into the low-temperature oxidation of methanol over a single-atom Pt1-Co3O4 catalyst, Advanced Functional Materials, 2019, 29: 1902041 [6] Yuxian Wang, Lulu Chen, Hongbin Cao, Zhaoxu Chi, Chunmao Chen, Xiaoguang Duan, Yongbing Xie*, Fei Qi, Weiyu Song, Jian Liu*, Shaobin Wang. Role of oxygen vacancies and Mn sites in hierarchical Mn2O3/LaMnO3-δperovskite composites for aqueous organic pollutants decontamination. Applied Catalysis B: Environmental 2019, 245: 546–554 [7] Songsong Li, Lu Wang, YanDong Li, Linhe Zhang, Aixia Wang, Nan Xiao, Yangqin Gao, Ning Li, Weiyu Song, Lei Ge*, Jian Liu*, Novel photocatalyst incorporating Ni-Co layered double hydroxides with P-doped CdS for enhancing photocatalytic activity towards hydrogen evolution. Applied Catalysis B: Environmental 2019, 254: 145–155 [8] Jiang, Zeyu; Jing, Meizan; Feng, Xiangbo; Xiong, Jingchao; He, Chi*; Douthwaite, Mark; Zheng, Lirong; Song, Weiyu; Liu, Jian*; Qu, Zhiguo*. Stabilizing platinum atoms on CeO2 oxygen vacancies by metal-support interaction induced interface distortion: Mechanism and application. Applied Catalysis B: Environmental 2020, 278: 119304. [9] Jixing Liu, Lu Wang, Jiahua Zhao, Pengfei Zhang*, Miaomiao Liu, Shize Yang, Francis Okejiri, Zihao Zhang, Weiyu Song, Wenshuai Zhu, Jian Liu*, Zhen Zhao, Guodong Feng*, Chunming Xu, Sheng Dai*, Deep Understanding of Strong Metal Interface Confinement: A Journey of Pd/FeOx catalysts. ACS Catalysis, 2020, 10: 8950-8959 [10] Zhang Zihao, Jing Meizan, Chen Hao, Okejiri Francis, Liu Jixing, Leng Yan, Liu Haolan, Song Weiyu, Hou Zhaoyin, Lu Xiuyang, Fu Jie*, Liu Jian*, Transfer Hydrogenation of Fatty Acids on Cu/ZrO2: Demystifying the Role of Carrier Structure and Metal-support Interface. ACS Catalysis, 2020, 10: 9098-9108
SCHOOL LIFE
21.MAR
Yuping Zhang
Yuping ZhangSchool of EngineeringPh.D.ProfessorMechanical Design, Manufacturing and Automationzyp_002@163.com Research Areas[1] Motion Control System[2] New Energy Technology[3] Analysis and design of complex system Part of publication1. Yuping Zhang, Xinzhi Liu, Huaiyue Zhang, Chuanhua Jia, Constructing Chaotic Systems from a Class of Switching Systems, International Journal of Bifurcation and Chaos, 28(2), pp:1850032 1-9, 2018 2. Yuping Zhang, Peng Shi, Hong Zhu, Jiangping Hu, Yong Zeng, Chaotification of a class of linear switching systems based on a Shilnikov criterion, Journal of The Franklin Institute, 354(13), pp. 5519-5536, 2017. 3. Yuping Zhang, Yi Mou and Zhongxiao Yang. An Energy Management Study on Hybrid Power of Electric Vehicle Based on Aluminum Air Fuel Cell, IEEE Transactions on Applied Superconductivity, 26(7), 0612306, 2016. 4. Yuping Zhang, Peng Shi, Hong Zhu, Jiangping Hu, Yong Zeng, Generating chaos for a class of linear switching control systems: A hybrid approach, Journal of The Franklin Institute, 352, pp. 5853-5865, 2015 5. Yuping Zhang, Xinzhi Liu, Hong Zhu, Yong Zeng, Chaotification of switching control systems via dwell time approach, Asian Journal of Control, 17(5), pp. 1611-1619, 2015 6. Yuping Zhang, Xinzhi Liu, Hong Zhu, Yong Zeng, Chaotification of a class of Linear Switching systems by hybrid driven methods, International Journal of Bifurcation and Chaos, 24(3), pp. 1450033 1-9, 2014 7. Yuping Zhang, Hong Zhu, Yong Zeng, Design for generating chaos from a class of switching linear systems, Applied mathematics & information sciences, 8(2), pp. 545-551, 2014 8. Yuping Zhang, Yuhua Wei, Zhongxiao Yang, Tao Liu, Yi Mou and Dong Chen. Design of Photovoltaic Fan Drive Based on MPPT. Proceeding of 2015IEEE Conference on Applied superconductivity and Electromagnetic Devices Shanghai, China, Nov. 20-23, pp. 33-34, 2015. 9. Yuping Zhang, Tao Liu, Zhongxiao Yang, Yi Mou, Yuhua Wei and Dong Chen. Design of Remote Control Plug. Proceeding of 2015IEEE Conference on Applied superconductivity and Electromagnetic Devices Shanghai, China, Nov. 20-23, pp. 29-30, 2015. 10. Yuping Zhang, Liyu You, Chunhua Jia. Fault detection and diagnosis using Bayesian-network inference. IECON 2017 - 43rd Annual Conference of the IEEE Industrial Electronics Society, 2017, 5049 – 5053 Invention patent1. An Induction Heating Power Supply with a New Cooling System2. A New compound control system for induction heat Power supply3. Method and system for controlling robot motion based on gesture recognition
SCHOOL LIFE
19.MAR
Jinjun Zhang
Jinjun ZhangSchool of EngineeringPh.D.ProfessorOil and gas storage and transportation engineeringzhangjj@cup.edu.cn Research Areas[1] Oil and Gas Long Distance Pipeline Transportation Technology[2] Oil and gas storage and transportation safety engineering Publication1.Huai Su, Jinjun Zhang*, Enrico Zio, Nan Yang, Xueyi Li, Zongjie Zhang. An integrated systemic method for supply reliability assessment of natural gas pipeline networks. Applied Energy, 2018:209:489–501. 2.Huai Su, Enrico Zio, Jinjun Zhang*, Xueyi Li. A systematic framework of vulnerability analysis of a natural gas pipeline network. Reliability Engineering and System Safety, 2018, 175: 79–91. 3.Liu Hongfei, Lu Yingda*, Zhang Jinjun*. A comprehensive investigation of the viscoelasticity and time-dependent yielding transition of waxy crude oils. Journal of Rheology. 2018, 62(2): 527-541. 4.Yuzhuo Li, Shanpeng Han, Yingda Lu,* and Jinjun Zhang*. Influence of asphaltene polarity on crystallization and gelation of waxy oils. Energy Fuels, 2018, 32: 1491?1497. 5.Mengran Sun, David Jou, Jinjun Zhang*. A nonlinear viscoelastic model and its thermodynamic entropies, Journal of Non-Newtonian Fluid Mechanics,2016,229:96-100. 6.Jiangbo Wen, Jinjun Zhang*, Min Wei. Effective viscosity prediction of crude oil-water mixtures with high water fraction. Journal of Petroleum Science and Engineering, 2016, 147: 760–770. 7.Yun Lei, Shanpeng Han, Jinjun Zhang*. Effect of the dispersion degree of asphaltene on wax deposition in crude oil under static conditions. Fuel Processing Technology, 2016, 146 :20–28. 8.Guangyu Sun, Jinjun Zhang*. Structural breakdown and recovery of waxy crude oil emulsion gels. Rheologica Acta, 2015, 54(9):817-829. 9.Jiangbo Wen, Jinjun Zhang,* Zhihui Wang,et al. Full and Partial Emulsification of Crude Oil?Water Systems asa Function of Shear Intensity, Water Fraction, and Temperature. Industrial and Engineering Chemistry Research, 2014, 53, 9513?9520. 10.Guangyu Sun, Jinjun Zhang,* and Hongying Li. Structural Behaviors of Waxy Crude Oil Emulsion Gels. Energy Fuels 2014, 28, 3718?3729. 11.Yun Lei, Shanpeng Han, Jinjun Zhang,* Youquan Bao, Zhiwei Yao, Ya’nan Xu. Study on the Effect of Dispersed and Aggregated Asphaltene on Wax Crystallization, Gelation, and Flow Behavior of Crude Oil. Energy Fuels, 2014, 28(4): 2314-2321. 12.Teng Houxing, Zhang Jinjun*. Modeling the Thixotropic Behavior of Waxy Crude. Industrial and Engineering Chemistry Research, 2013, 52, 8079?8089. 13.Chengyu Bai, Jinjun Zhang*. Thermal, Macroscopic, and Microscopic Characteristics of Wax Deposits in Field Pipelines. Energy Fuels, 2013, 27, 752?759. 14.Bai Chengyu, Zhang Jinjun*. Effect of Carbon Number Distribution of Wax on the Yield Stress of Waxy Oil Gels. Industrial and Engineering Chemistry Research, 2013, 52, 2732?2739. 15.Teng Houxing, Zhang Jinjun*. A new thixotropic model for waxy crude. Rheologica Acta, 2013, 52(10-12):903-911. 16.Shize Yi, and Jinjun Zhang*. Relationship between Waxy Crude Oil Composition and Change in the Morphology-and-structure of Wax Crystals Induced by Pour-point-depressant- beneficiation. Energy Fuels , 2011,25( 4):1686-1696. 17.Shize Yi, and Jinjun Zhang*. Shear-Induced Change in Morphology of Wax Crystals and Flow Properties of Waxy Crudes Modified with the Pour-Point Depressant. Energy Fuels 2011, 25(12), 5660–5671. 18.Peng Gao, Jinjun Zhang, Guixia Ma. Direct image-based fractal characterization of morphologies and structures of wax crystals in waxy crude oils. Journal of Physics: Condensed Matter. 18 (2006) 11487–11506. 19.Jun Chen,Jinjin Zhang. Determining the wax content of waxy crudes using differential scanning calorimetry. Thermochimica Acta, 2004,410:23-26. 20.Hongying Li,Jinjun Zhang. A generalized model for predicting non-Newtonian viscosity of waxy crudes as a function of temperature and precipitated wax.Fuel,2003, 82(11): 1387-1397. Invention patent1. Method and device for evaluating gas supply reliability of natural gas pipe network2. Device for improving liquid flowability and use3. Method and apparatus for determining operation parameters of waxy crude oil pipelines4. Test method for molecular diffusion coefficient of wax
SCHOOL LIFE
19.MAR
Changyun Li
Changyun LiSchool of EngineeringPh.D.ProfessorMechanical Design, Manufacturing and Automationlichangyun@cupk.edu.cn; Research Areas[1] Advanced manufacturing[2] Intelligent detection[3] Composite materials[4] Porous materials[5] Functional materials Part of publication[1] Changyun Li, Yasong Wang, Lei Xu*.Microstructure and Mechanical Property of Compact Graphite/6061Al Composite Prepared by Ultra-High Pressure Sintering.APPLIED SCIENCES,Applied Science, 2020, 10: 5107(SCI) [2] Li Changyun, Wang Haiyan, Wu Shiping. Research on mould filling and solidification of titanium alloy in vertical centrifugal casting. Rare Metal Materials and Engineering,2010,39(3):388-392(SCI,EI) [3] G. Mi, C. Li*, K. Wang and L. Chen。Microstructure and properties of 50Si50Al alloy fabricated by HPS process using overspray powders,Materials Research Innovations,2013,17:182-185(SCI) [4] G.Mi, C.Li, Y.Liu, B.Zhang, G.Song. Numerical simulation and optimization of the casting process of a casting-steel wheel. Engineering Reviw,2013,33(2):93-99(EI) [5] Zhiru. Chen, Changyun. Li, Lei. Xu, Guofa. Mi. Casting Process Design and Wear Properties of a High Chromium Cast Iron Hammer[J]. Engineering Review, 2017, 37(1):74-81. [6] L.Changyun,W.Shiping,G.Jingjie and F.Hengzhi. Hydraulic Modeling of Mould Filling Behavior During Vertical Centrifugal Casting Processing. International Journal of Cast Metals Research. 2006, 19(4):237-240(SCI) [7] LI Changyun, WU Shiping, GUO Jingjie, SU Yanqing, BI Weisheng, FU Hengzhi. Model Experiment of Mold Filling Process in Vertical Centrifugal Casting. Journal of Materials Processing Technology. 2006, 176:268-272 (SCI) [8] LI Changyun, WU Shiping, GUO Jingjie, et al. Castability of thin walled titanium alloy castings in vertical centrifugal field. Materials Science and Technology.2008,10(24) :1209-1213 (SCI)
SCHOOL LIFE
19.MAR
Yansheng Liu
Yansheng LiuSchool of EngineeringPh.D.ProfessorChemical Engineering and Technologywsuper@cup.edu.cn Research Areas[1] Transfer and separation process[2] Rectification process[3] Equipment development and fault diagnosis Part of publication1. Huihong Liu, Zhenmin Bai, Yansheng Liu, Xuqiang Guo, Xinyun PuInterpretation and prediction of the vapor–liquid equilibrium of formaldehyde –water–methanol ternary system by the conductor- like screening model for real solvents. Fluid Phase Equilibria, 2016,Vol.429(10): 233-241(SCI、EI) 2. Zhenmin Bai, Huihong Liu, Yansheng Liu, Lehuan Wu.Prediction of the vapor–liquid equilibrium of chemical reactive systems containing formaldehyde using the COSMO-RS method. Fluid Phase Equilibria. 2016, Vol. 415(5): 125-133(SCI、EI) 3. Guizhen Li, Yansheng Liu,Yufeng Hu, Jun Wang, Lehuan Wu, and Chunfeng Shi. Applying Modified Chemical Equilibrium Constants for Improving Equilibrium Species Distribution and Vapor–Liquid Equilibrium (VLE) Prediction of Formaldehyde Aqueous Solutions. Ind. Eng. Chem. Res. 2015, 54, 10901− 10909(SCI、EI) 4. Guizhen Li, Yufeng Hu,* Yansheng Liu,* Guolin Li, Yixuan Tang, Lehuan Wu, Chunfeng Shi, and Kun Xu. Isobaric Vapor−Liquid Equilibrium for the Ternary System(Formaldehyde + 1,3-Dioxolane + Water) at 101.3 kPa. J. Chem. Eng. Data 2013, 58, 2854−2860(SCI、EI) 5. Rui Cao, GuoleiFu, Yansheng Liu, Chaoyu Yan, Yan Wu, Jun Wang. Exponential Function Shortcut Method for the Calculation of the Number of Theoretical Plates in a Distillation Column. Ind. Eng. Chem. Res. 2014, 53, 14830− 14840(SCI、EI) 6. Jun Wang, Yixuan Tang, Yansheng Liu, Rui Cao, Tianxin Chen, Yufeng Hu, and Xuejun Fan.A New Dry Tray Pressure Drop Model of Float Valve Trays. AIChEJ. 2013, Vol. 59(7): 2694-2705(SCI、EI) 7. Rui Cao, Guolei Fu, Huaming Guo,*, Yansheng Liu,*, Yixuan Tang, Yan Wu and Xianjian Zhang.Exponential functional rigorous method for calculation of the number of theoretical plates in distillation column theoretical plates in distillation column. Chemical Engineering Science.2012,Vol.84:628–637(SCI、EI) 8. MA Zheng, DONG Xiaoxia, HuYufeng, ZHANG Bosong,XU Changying and LIU Yansheng*.Effect of Ionic Liquids on Organic Reactions Based on Activity Coefficients at Infinite Dilution. Chinese Journal of Chemical Engineering 2013.21(12):1370-1375(SCI) 8. Yansheng Liu, Mingxian. Shi,Rui Cao,Yaohui Zhang, Yufeng Hu, Densities and viscosities of the quaternary system Mannitol-Sorbitol-D-Glucose-H2O and its ternary subsystems at 298.15K, Chinese J. Chem. Eng, 2007, 15(5), 703-709. (SCI、EI) 9. Liu Y S, Hu Y F, Hao Q C, Zhang X M, Liu Z C, Li J G. Viscosity and density of the system NaCl + LaCl3 + H2O and its binary subsystems at different temperatures. J. Chem. & Eng. Data; 2009; 54: 739-744. (SCI、EI) Part of Invention patent[1] Winged valve tray[2] U-shape float valve tray with fin[3] Three-stage baffle narrow groove type liquid distributor[4] Floating valve tray with modified valve hole structures[5] Fractionating tower mass transfer component[6] High-speed gas-liquid mass transfer component
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