基本信息 | 姓名 | 菅永軍 | ||
---|---|---|---|---|
系室 | 數學系 | |||
職稱 | 教授 | |||
聯系方式 | 見學院黃頁 | |||
電子郵件 | jianyj@dhu.edu.cn | |||
研究方向 | 應用數學、流體力學,包括微納尺度流體力學、非牛頓流體力學、水動力學和流動的穩定性、熱質傳輸等。 | |||
個人簡介 | 菅永軍,男,漢族,1974年生,民盟盟員,内蒙古大學數學科學學院教授,博士生導師。2003年獲中國科學院力學研究所流體力學專業博士學位。 2020年當選第十一屆流體力學專業委員會微納尺度流動專業組組員,第十一屆流體力學專業委員會非牛頓流體力學專業組組員。現任内蒙古數學學會理事,曾任山東省聲學學會副理事長,中山大學第三層次百人計劃入選者。國家自然基金通訊評審專家,2014年和2021年受聘内蒙古大學學校、學部和教授三級委員會委員。擔任多個國内外著名雜志,如 Journal of Fluid Mechanics, Physics of fluids, International Journal of Heat and Mass Transfer,《物理學報》等的審稿人。主持包括國家自然基金面上項目等科研項目10餘項,已發表包括流體力學學科方面的頂級SCI期刊Journal of Fluid Mechanics, Physics of fluids以及Journal of Non-Newtonian Fluid Mechanics等收錄論文120餘篇。指導國家級大學生創新項目4項,自治區研究生創新項目7項。指導的研究生中14人獲國家獎學金,1人獲第九屆中國青少年科技創新獎,1人獲自治區獎學金,1人獲烏可力獎學金,2人獲内蒙古大學校長勵學獎優秀碩士和優秀博士學生獎,3位博士生獲内蒙古自治區優秀博士學位論文。 | |||
學習經曆 | 起止年月 | 學校 | 專業 | 學位/學曆 |
1998/09-2003/01 | 中國科學院力學研究所 | 流體力學 | 博士學位 | |
1995/09-1998/07 | 内蒙古大學數學系 | 應用數學 | 碩士學位 | |
1991/09-1995/07 | 内蒙古師範大學數學系 | 數學 | 學士學位 | |
工作經曆 | 起止年月 | 單位 | 職稱/職務 | |
2003/03-2005/12 | 國家海洋局第一海洋研究所 | 博士後 | ||
2006/06-2009/04 | 中山大學工學院 | 副教授、碩士生導師 | ||
2009/06-2024/01 | 内蒙古大學數學科學學院 | 教授、博士生導師 | ||
2012/09-2013/09 | 美國Cornell大學化學與生物分子工程學院 | 訪問學者 | ||
2017/09-2018/07 | 北京大學工學院 | 訪問學者 | ||
2018/02-2018/05 | 美國Texas大學Rio Grande Valley分校 | 訪問學者 | ||
2024/02-至今 | 東華大學理學院 | 教授、碩士生導師、博士生導師 | ||
教學成果 | 課程名稱 | |||
近年來主講了本科生的基礎專業課《數學物理方程》、《常微分方程》以及碩士研究生的基礎專業課《偏微分方程》、《流體力學》、《微尺度流體力學》等。在教學工作中,始終堅持為人師表,尊重學生,确立以學生為主體,以培養學生主動發展為中心的教學思想,重視學生的個性發展,重視激發學生的創造能力。 | ||||
科研成果 | 研究名稱 | |||
主持的項目: 1. 主持國家自然科學基金地區項目: 電磁場作用下奇粘性對微尺度薄液膜不穩定性的影響(項目編号:12262026),時間:2023.01–2026.12; 2. 主持内蒙古自治區高等學校創新團隊發展計劃項目:應用數學、流體力學 (項目編号:NMGIRT2323),時間:2023.01–2025.12; 3. 主持内蒙古自然基金面上項目: 碳納米管内包含非牛頓流體的不穩定性研究(項目編号:2021MS01007),時間:2021.01–2023.12; 4. 主持内蒙古自治區黨委組織部: 2019年“草原英才”滾動支持項目(項目編号:12000-12102408),時間:2019.11–2021.11; 5. 主持國家自然科學基金面上項目: 微納通道中物理特性随壓力變化的流體的電動能量轉化 (項目編号:11772162),時間:2018.01–2021.12; 6. 主持國家自然科學基金面上項目: 垂向磁場作用下微通道内的電滲流動與傳熱研究(項目編号:11472140),時間:2015.01–2018.12; 7. 主持國家自然科學基金地區項目: 兩層流體Faraday 界面波動力學研究(項目編号:11062005),時間:2011.01–2013.12; 8. 主持内蒙古自然基金面上項目: 柔性納米管道中電滲流動(項目編号:2016MS0106),時間:2016.01–2018.12; 9. 主持内蒙古自治區黨委組織部: 2015年入選内蒙古自治區第五批“草原英才”(項目編号:12000-12102013),時間:2015.11–2018.11; 10. 主持内蒙古自治區高等學校“青年科技領軍人才”項目: 微流體管道中非牛頓流體的非定常電滲流動(項目編号:NJYT-13-A02),時間:2013.01–2014.12; 11. 主持内蒙古自然科學基金項目: 雙頻垂直激勵兩層流體的 Faraday 界面波(項目編号:2010BS0107),時間:2010.01–2012.12; 12. 主持中科院力學所LNM國家重點實驗室開放基金項目:微管道中具有自由面的非牛頓流體的電滲流動,時間:2012.01–2013.12; |
代表性論文&科研 |
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2024年 |
Yanjun Sun, Beinan Jia, Yongjun Jian*, Convection instability of linear Oldroyd-B fluids in a vertical channel with non-Fourier heat flux model, Physics of Fluids, 2024, 36, 064116. |
Beinan Jia, Yongjun Jian*, The effect of Oldroyd-B fluid on thermal convection stability in a bidispersive porous media with relatively large macropores, Physics of Fluids, 2024, 36, 014105. |
Xingyu Chen, Zhiyong Xie, Yongjun Jian*, Streaming potential of viscoelastic fluids with the pressure- dependent viscosity in nanochannelPhysics of Fluids, 2024, 36, 032025. |
Jialu Wang, Beinan Jia, Yongjun Jian*, Faraday instability of viscous liquid films on a heated substrate with Maxwell-Cattaneo heat flux, Physics of Fluids, 2024, 36, 094101. |
Yongjun Jian*, Oscillatory squeeze flow through an Oldroyd-B fluid saturated porous layer, Applied Mathematics and Mechanics (English Edition), 2024, 45 In press. |
Ke Shi, Beinan Jia, Jialu Wang, Yongjun Jian*, Convection instability in a vertical porous Brinkman fluid layer with uniform horizontal throughflow, Chinese Journal of Physics, 2024, 91, 757–772. |
Yue Zhanga, Guangpu Zhao*, Bo Xue, Mandula Buren, Yongjun Jian*, The electrokinetic energy conversion and streaming potential analytical solutions of couple stress nanofluids in the circular polyelectrolyte-grafted nanochannel, Chinese Journal of Physics, 2024, 91, 807–827. |
Yanjun Sun, Beinan Jia, Long Chang, Yongjun Jian*, Soret-driven convection of Maxwell-Cattaneo fluids in a vertical channel, European Journal of Mechanics / B Fluids, 2024, 107, 17–28. |
Shuting Lu, Beinan Jia, Jialu Wang, Yongjun Jian*, Instability of double-diffusive natural convection in a vertical Brinkman porous layer, Meccanica, 59, 1539–1553. |
Long Chang, Guangpu Zhao, Mandula Buren, Yanjun Sun, and Yongjun Jian*, Alternating Current Electroosmotic Flow of Maxwell Fluid in a Parallel Plate Microchannel with Sinusoidal Roughness, Micromachines, 2024, 15(1), 4. |
Yanjun Sun, Jialu Wang, Beinan Jia, Long Chang, and Yongjun Jian*, Double diffusion convection of Maxwell-Cattaneo fluids in a vertical slot, Open Physics, 202422, 20240039. |
孫豔軍,王嘉璐,賈北楠,菅永軍*,非傅裡葉效應對Maxwell流體在垂直槽道中熱對流不穩定性的影響,力學學報,2024, 56(8), 2184–2192. |
長龍,布仁滿都拉,孫豔軍,菅永軍*,具有正弦波紋的平行闆微通道中Jeffrey流體周期電滲流動,應用數學和力學,2024,45(5): 622-636. |
長龍,布仁滿都拉,娜仁,孫豔軍,菅永軍*,pH調節的納米平行通道中Powell-Eyring流體的電滲流動,應用數學和力學,2024,已接收 |
2023年 |
Zhiyong Xie, Yongjun Jian*, Xingyu Chen, Electrokinetic energy conversion of high pressure-driven flow with pressure-viscosity effect at high zeta potential, International Journal of Engineering Science, 2023, 184,103819. |
Beinan Jia, Yongjun Jian*,Stability of a liquid film on inclined flexible substrates: Effect of the spontaneous odd viscosity, Physical Review E, 2023, 108, 045104. |
Xin Chu, Yongjun Jian*, Electrostatically induced Faraday instability of thin film with spontaneous odd viscosity, Journal of Non-Newtonian Fluid Mechanics, 2023, 314, 105013. |
Jialu Wang, Yanjun Sun, Yongjun Jian*, Rayleigh-Taylor instability of viscous liquid film under an inclined substrate with time modulated temperature, International Communications in Heat and Mass Transfer, 2023, 142, 106677. |
Siyi An, Yongjun Jian*,Rayleigh–Taylor instability of viscoelastic self-rewetting film flowing down a temperature-controlled inclined substrate, Chinese Physics B, 2023, 32, 064701. |
Nailin Ma, Yanjun Sun, Yongjun Jian*, Electromagnetohydrodynamic (EMHD) Flow in a Microchannel with Random Surface Roughness, Micromachines, 2023, 14, 1617. |
Zhili Wang, Yanjun Sun, Yongjun Jian*,The Effect of Random Roughness on the Electromagnetic Flow in a Micropipe, Micromachines, 2023, 14, 2054. |
Jiaxuan Zheng, Jialu Wang, Yongjun Jian*, Micro Electro-Osmotic Thrusters of Power-Law Fluids for Space Propulsion, Micromachines, 2023, 14, 949. |
鄭佳璇,梁韻笛,菅永軍*,高Zeta勢下Phan-Thien-Tanner(PTT)流體的電滲微推進器,應用數學和力學,2023,44(10), 1213–1225. |
Xue Gao, Guangpu Zhao*, Na Li, Ying Zhang, Yongjun Jian, The electrokinetic energy conversion analysis of Newtonian fluids with pressure-dependent viscosity in rectangular nanotube, Journal of Molecular Liquids, 2023, 371, 121022. |
2022年 |
Yongjun Jian*, Electrokinetic energy conversion of fluids with pressure-dependent viscosity in nanofluidic channels, International Journal of Engineering Science, 2022, 170,103590. |
Beinan Jia, Yongjun Jian*, The effect of odd-viscosity on Rayleigh–Taylor instability of a liquid film under a heated inclined substrate, Physics of Fluids, 2022, 34, 044101. |
Xin Chu, Long Chang, Beinan Jia, Yongjun Jian*, Effect of the odd viscosity on Faraday wave instability, Physics of Fluids, 2022, 34, 114123. |
Zhiyong Xie, Yongjun Jian*, Electrokinetic energy conversion of power-law fluids in a slit nanochannel beyond Debye-Hückel linearization, Energy, 2022, 252, 124029. |
Yongbo Liu, Jingnan Xing, Yongjun Jian*, Heat transfer and entropy generation analysis of electroosmotic flows in curved rectangular nanochannels considering the influence of steric effects, International Communications in Heat and Mass Transfer, 2022, 139, 106501. |
Shujuan An, Kai Tian, Zhaodong Ding*, Yongjun Jian, Electroosmotic and pressure-driven slip flow of fractional viscoelastic fluids in microchannels, Applied Mathematics and Computation, 2022, 425, 127073. |
Zhaodong Ding, Kai Mu, Ting Si*, Yongjun Jian, Linear instability analysis of a viscoelastic jet in a co-flowing gas stream, Journal of Fluid Mechanics, 2022, 936, A6. |
Xin Chu, Yongjun Jian*, Electrokinetic energy conversion through cylindrical microannulus with periodic heterogeneous wall potentials, Journal of Physics D: Applied Physics, 2022, 55, 145501. |
Xingyu Chen, Yongjun Jian*, Entropy generation minimization analysis of two immiscible fluids, International Journal of Thermal Sciences, 2022, 171,107210. |
Xingyu Chen, Yongjun Jian*, Zhiyong Xie, Slippery electrokinetic flow of viscoelastic fluids with pressure-dependent viscosity and relaxation timeColloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 639, 128354. |
Zhaodong Ding, Long Chang, Kai Tian, Yongjun Jian*, On the energy conversion in electrokinetic transports, Applied Mathematics and Mechanics (English Edition), 2022, 43(2), 263–274. |
Shujuan An, Kai Tian, Zhaodong Ding*, Yongjun Jian, Electromagnetohydrodynamic (EMHD) flow of fractional viscoelastic fluids in a microchannel, Applied Mathematics and Mechanics (English Edition), 2022, 43(6), 917–930. |
Xingyu Chen, Yongjun Jian*, Heat transfer of nanofluid with electroviscous effect in MHD-based microannulus, Journal of Thermal Analysis and Calorimetry, 2022, 147, 2715–2728. |
Long Chang, Yanjun, Sun, Mandula Buren, Yongjun Jian*, Thermal and Flow Analysis of Fully Developed Electroosmotic Flow in Parallel-Plate Micro- and nanochannel with Surface Charge-Dependent Slip, Micromachines, 2022, 13, 2166. |
Jiali Zhang, Guangpu Zhao*, Xue Gao, Na Li, Yongjun Jian*, Streaming potential and electrokinetic energy conversion of nanofluids in a parallel plate microchannel under the time-periodic excitation, Chinese Journal of Physics, 2022, 75, 55–68. |
Na Li, Guangpu Zhao*, Xue Gao, Ying Zhang, Yongjun Jian, The impacts of viscoelastic behavior on electrokinetic energy conversion for Jeffreys fluid in microtubes, nanomaterials, 2022, 12, 3355. |
Xinyue Bian, Fengqin Li * and Yongjun Jian, The Streaming Potential of Fluid through a Microchannel with Modulated Charged Surfaces, Micromachines, 2022, 13, 66. |
2021年 |
Zhaodong Ding, Yongjun Jian*, electrokinetic oscillatory flow and energy conversion of viscoelastic fluids in microchannels: a linear analysis, Journal of Fluid Mechanics, 2021, 919, A20. |
Gaowa Bao, Yongjun Jian*, Odd-viscosity-induced instability of a falling thin film with an external electric field, Physical Review E, 2021, 103, 013104. |
Xingyu Chen, Yongjun Jian*, Zhiyong Xie, Electrokinetic flow of fluids with pressure-dependent viscosity in a nanotube, Physics of Fluids, 2021, 33, 122002. |
Zhaodong Ding, Yongjun Jian*, Resonance behaviors in periodic viscoelastic electrokinetic flows: a universal Deborah number, Physics of Fluids, 2021, 33, 032023. |
Jiaxuan Zheng, Siyi An, Yongjun Jian*, Steric effects on electroosmotic nano-thrusters under high zeta potentials, Mathematics, 2021, 9, 3222. |
Guangpu Zhao, Jiali Zhang, Zhiqiang Wang, Yongjun Jian*, Electrokinetic energy conversion of electromagnetohydrodynamic (EMHD) nanofluids through a microannulus under the time-periodic excitation, Applied Mathematics and Mechanics (English Edition), 2021, 42(7), 1029–1046. |
Jiaxuan Zheng, Beinan Jia, Yongjun Jian*, Steric effects on space electroosmotic thrusters in soft nanochannels, Mathematics, 2021, 9, 1916. |
Jiaxuan Zheng, Yongjun Jian*, Space electroosmotic thrusters in ion partitioning soft nanochannels, Micromachines, 2021, 12, 777. |
Beinan Jia, Yongjun Jian*, Instability of single-walled carbon nanotubes conveying Jeffrey fluid, Chinese Physics B, 2021, 30(4), 044601. |
Juanxia Zhao, Yongjun Jian*, Effect of odd viscosity on the stability of a falling thin film in presence of electromagnetic field, Fluid Dynamics Research, 2021, 53, 015510. |
Juanxia Zhao, Yongjun Jian*, Effect of odd viscosity on the stability of thin viscoelastic liquid film flowing along an inclined plate, Physica Scripta, 2021, 96, 055241. |
2020年 |
Jiaxuan Zheng, Yongjun Jian*, Electroosmotic thrusters in soft nanochannels for space propulsion, Physics of Fluids, 2020, 32,122005. |
Meizhen Xu, Yongjun Jian*, Unsteady rotating electroosmotic flow with time-fractional Caputo-Fabrizio derivative, Applied Mathematics Letters, 2020, 100, 106015. |
Yongbo Liu, Yongjun Jian*, Chunhong Yang, Electrochemomechanical energy conversion efficiency in curved rectangular nanochannels, Energy, 2020, 198, 117401. |
Zhiyong Xie, Yongjun Jian*, Electrokinetic energy conversion of nanofluids in MHD-based microtube, Energy, 2020, 212, 118711. |
Na Hao, Yongjun Jian*, Instability analysis of carbon nanotubes conveying viscoelastic fluid, Journal of Physics D: Applied Physic, 2020, 53, 11LT01. |
Yongbo Liu, Yongjun Jian*, Chunhong Yang, Steric-effect-induced enhancement of electrokinetic energy conversion efficiency in curved nanochannels with rectangular sections at high zeta potentials, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020, 591, 124558. |
Yongbo Liu, Yongjun Jian*, Chunhong Yang, On electromagnetohydrodynamic flows and mass transport in curved rectangular microchannels, Applied Mathematics and Mechanics (English Edition), 2020, 41, 1431–1446. |
Chunhong Yang, Yongjun Jian*, Effect of patterned hydrodynamic slip on electromagnetohydrodynamic flow in a parallel plate microchannel, Chinese Physics B, 2020, 29(11), 11410. |
Chunhong Yang, Yongjun Jian*, Zhiyong Xie, Fengqin Li, Electromagnetohydrodynamic electroosmotic flow and entropy generation of third-grade fluids in a parallel microchannel, Micromachines, 2020, 11, 418. |
王爽,菅永軍*,周期壁面電勢調制下平行闆微管道中的電磁電滲流動,應用數學和力學,2020, 41(4) , 396–405. |
2019年 |
Zhaodong Ding, Yongjun Jian*, Wenchang Tan, Electrokinetic energy conversion of two-layer fluids through nanofluidic channels, Journal of Fluid Mechanics, 2019, 863, 1062–1090. |
Xin Chu, Yongjun Jian*, Magnetohydrodynamic electroosmotic flow of Maxwell fluids with patterned charged surface in narrow confinements, Journal of Physics D: Applied Physic, 2019, 52, 405003. |
Guangpu Zhao, Zhiqiang Wang, Yongjun Jian*, Heat transfer of the MHD nanofluid in porous microtubes under the electrokinetic effects, International Journal of Heat and Mass Transfer, 2019, 130, 821–830. |
Yongbo Liu, Yongjun Jian*, The effects of finite ionic sizes and wall slip on entropy generation in electroosmotic flows in a soft nanochannel, Journal of Heat Transfer, 2019, 141, 102401. |
Chunhong Yang, Yongjun Jian*, Zhiyong Xie, Fengqin Li, Heat transfer characteristics of Magnetohydrodynamic electroosmotic flow in a rectangular microchannel, European Journal of Mechanics / B Fluids, 2019, 74, 180–190. |
Yongbo Liu, Yongjun Jian*, Rotating electroosmotic flows through soft parallel plate microchannels, Applied Mathematics and Mechanics (English Edition), 2019, 40(7), 1017–1028. |
Yongbo Liu, Yongjun Jian*, Electroviscous effect on electromagnetohydrodynamic flows of Maxwell fluids in parallel plate microchannels, Applied Mathematics and Mechanics (English Edition), 2019, 40(10), 1457–1470. |
Fengqin Li, Yongjun Jian*, Mandula Buren, Long Chang, Effects of three-dimensional surface corrugations on electromagnetohydrodynamic flow through microchannel, Chinese Journal of Physics, 2019, 60, 345–361. |
Mandula Buren*, Yongjun Jian, Yingchun Zhao, Long Chang, Quansheng Liu, Effects of surface charge and boundary slip on time-periodic pressure-driven flow and electrokinetic energy conversion in a nanotube, Beilstein Journal of Nanotechnology, 2019, 10, 1628–1635. |
Zehua Wang, Yongjun Jian*, Heat transport of electrokinetic flow in slit soft nanochannels, Micromachines, 2019, 10, 34. |
Guangpu Zhao, Yongjun Jian*, Thermal transport of combined electroosmotically and pressure driven nanofluid flow in soft nanochannels, Journal of Thermal Analysis and Calorimetry, 2019, 135, 379–391. |
Na Hao, Yongjun Jian*, Magnetohydrodynamic electroosmotic flow with patterned charged surface and modulated wettability in a parallel plate microchannel, Communications in Theoretical Physics, 2019, 71, 1163–1171. |
許麗娜,菅永軍*,柔性圓柱形微管道内的電動流動及傳熱研究,應用數學和力學,2019, 40(4), 408–418 |
2018年 |
Zhiyong Xie, Yongjun Jian*, Wenchang Tan, Streaming potential analysis and electrokinetic energy conversion efficiency of two immiscible fluids in a nanochannel, Sensors & Actuators: BChemical, 2018, 273, 1257–1268. |
Zhiyong Xie, Yongjun Jian*, Entropy generation of magnetohydrodynamic electroosmotic flow in two-layer systems with a layer of non-conducting viscoelastic fluid, International Journal of Heat and Mass Transfer, 2018, 127 Part B, 600–615. |
Yongbo Liu, Yongjun Jian*, Wenchang Tan, Entropy generation of Electromagnetohydrodynamic (EMHD) flow in a curved rectangular microchannel, International Journal of Heat and Mass Transfer, 2018, 127 Part A, 901–913. |
Zhiyong Xie, Yongjun Jian*, Fengqin Li, Thermal transport of magnetohydrodynamic electroosmotic flow in circular cylindrical microchannels, International Journal of Heat and Mass Transfer, 2018, 119, 355–364. |
Jiaxuan Zheng, Yongjun Jian*, Rotating electroosmotic flow of two-layer fluids through a microparallel channel, International Journal of Mechanical Sciences, 2018, 136,293–302. |
Mandula Buren*, Yongjun Jian, Yingchun Zhao, Long Chang, Electroviscous effect and electrokinetic energy conversion in time periodic pressure-driven flow through a parallel-plate nanochannel with surface charge-dependent slip, Journal of Physics D: Applied Physic, 2018, 51, 205601. |
Xingyu Chen, Yongjun Jian*, Zhiyong Xie, Zhaodong Ding, Thermal transport of electromagneto- hydrodynamic in a microtube with electrokinetic effect and interfacial slip, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2018, 540, 194–206. |
Jingnan Xing, Yongjun Jian*, Steric effects on electroosmotic flow in soft nanochannels, Meccanica, 2018, 53, 135–144. |
Guangpu Zhao, Yongjun Jian*, Heat transfer of the nanofluid in soft nanochannels under the effects of the electric and magnetic field, Powder Technology, 2018, 338, 734–743. |
Xingyu Chen, Yongjun Jian*, Streaming potential analysis on the hydrodynamic transport of pressure-driven flow through a rotational microchannel, Chinese Journal of Physics, 2018, 56, 1296–1307. |
2017年 |
Zhiyong Xie, Yongjun Jian*, Entropy generation of two-layer magnetohydrodynamic electroosmotic flow through microparallel channels, Energy, 2017, 139, 1080–1093. |
Zhaodong Ding, Yongjun Jian*, Liangui Yang, Analytical investigation of electrokinetic effects of micropolar fluids in nanofluidic channels, Physics of Fluids, 2017, 29, 082008. |
Huicui Li, Yongjun Jian*, Dispersion for periodic electro-osmotic flow of Maxwell fluid through a microtube, International Journal of Heat and Mass Transfer, 2017, 115, 703–713. |
Zhiyong Xie, Yongjun Jian*, Rotating electromagnetohydrodynamic flow of power-law fluids through a microparallel channel, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2017, 529, 334–345. |
Yongjun Jian*, Fengqin Li, Yongbo Liu, Long Chang, Quansheng Liu, Liangui Yang, Electrokinetic energy conversion efficiency of viscoelastic fluids in a polyelectrolyte-grafted nanochannel, Colloids and Surfaces B: Biointerfaces, 2017, 156, 405–413. |
Fengqin Li, Yongjun Jian*, Zhiyong Xie, Yongbo Liu, Quansheng, Liu, Transient alternating current electroosmotic flow of the Jeffrey fluid through a polyelectrolyte-grafted nanochannelRSC Advances, 2017, 7, 782–790. |
Guangpu Zhao, Yongjun Jian*, Fengqin Li, Electromagnetohydrodynamic flow and heat transfer of nanofluid in a parallel plate microchannel, Journal of Mechanics, 2017, 33, 115–124. |
Fengqin Li, Yongjun Jian*, Zhiyong Xie, Lin Wang, Electromagnetohydrydynamic flow of Powell-Eyring fluids in a narrow confinementJournal of Mechanics, 2017, 33, 225–233. |
Mandula Buren, Yongjun Jian*, Long Chang, Fengqin Li, Quansheng Liu, Combined electromagneto- hydrodynamic flow in a microparallel channel with slightly corrugated walls, Fluid Dynamics Research, 2017, 49, 025517. |
Mandula Buren, Yongjun Jian*, Long Chang, Quansheng Liu, Guangpu Zhao, AC magnetohydrodynamic slip flow in microchannel with sinusoidal roughness, Microsystem Technologies, 2017, 23, 3347–3359. |
2016年 |
Fengqin Li, Yongjun Jian*, Long Chang, Guangpu Zhao, Liangui Yang, Alternating current electroosmotic flow in polyelectrolyte-grafted nanochannel, Colloids and Surfaces B: Biointerfaces 2016, 147, 234–241. |
Guangpu Zhao, Yongjun Jian*, Fengqin Li, Streaming potential and heat transfer of nanofluids in parallel plate microchannels, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2016, 498, 239–247. |
Guangpu Zhao, Yongjun Jian*, Fengqin Li, Heat transfer of nanofluids in microtubes under the effects of streaming potential, Applied Thermal Engineering, 2016, 100, 1299–1307. |
Lin Wang, Yongjun Jian*, Quansheng Liu, Fengqin Li, Long Chang, Electromagnet hydrodynamic flow and heat transfer of third grade fluids between two micro-parallel plates, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2016, 494, 87–94. |
Guangpu Zhao, Yongjun Jian*, Fengqin Li, Streaming potential and heat transfer of nanofluids in microchannels in the presence of magnetic field, Journal of Magnetism and Magnetic Materials, 2016, 407, 75–82. |
Long Chang, Yongjun Jian*, Mandula Buren, Yanjun Sun, Electroosmotic flow through a microparallel channel with 3D wall roughness, Electrophoresis, 2016, 37(3), 482–492. |
Dongqing Si, Yongjun Jian*, Long Chang, Quansheng Liu, Unsteady rotating electroosmotic flow through a slit microchannel, Journal of Mechanics, 2016, 32(5), 603–611. |
Long Chang, Yongjun Jian*, Mandula Buren, Quansheng Liu, Yanjun Sun, Electroosmotic Flow Through a Microtube with Sinusoidal Roughness, Journal of Molecular Liquids, 2016, 220, 258–264. |
Zhaodong Ding, Yongjun Jian*, Liangui Yang, Time periodic electroosmotic flow of micropolar fluids through a microparallel channel, Applied Mathematics and Mechanics (English Edition), 2016, 37(6), 769–786. |
邢靖楠,菅永軍*,矩形納米管道中的電動能量轉換效率,應用數學和力學,2016, 37(4), 363–372. |
長龍,劉全生*,菅永軍,布仁滿都拉,孫豔軍,具有正弦粗糙度的環形微管道中脈沖流動,應用數學和力學,2016, 37(10), 1118–1128. |
劉勇波,菅永軍*,具有聚電解質層圓柱形納米通道中的電動能量轉換效率,物理學報,2016, 65(8), 084704. |
Lin Wang, Yongjun Jian*, Fengqin Li, The flow of micropolar fluids through a corrugated microparallel channel, The European Physical Journal Plus, 2016, 131, 338. |
Yufei, Wei, Haijun Wang, Yongjun Jian*, Pressure oscillating flow in corrugated parallel channel, Communications in Theoretical Physics, 2016, 66(6), 694–700. |
2015年 |
Yongjun Jian*, Transient MHD heat transfer and entropy generation in a microparallel channel combined with pressure and electroosmotic effects, International Journal of Heat and Mass Transfer, 2015, 89, 193–205. |
Yongjun Jian*, Long Chang, Electromagnetohydrodynamic (EMHD) micropumps under a spatially non-uniform magnetic field, AIP Advances, 2015, 5, 057121. |
Yongjun Jian*, Dongqing Si, Long Chang, Quansheng Liu, Transient rotating Electromagnetohydrodynamic micropumps between two infinite microparallel plates, Chemical Engineering Science, 2015, 134, 12–22. |
Yapeng Liu, Yongjun Jian*, Quansheng Liu, Fengqin Li, Alternating current magnetohydrodynamic electroosmotic flow of Maxwell fluids between two micro-parallel plates, Journal of Molecular Liquids, 2015, 211, 784–791. |
Chonghua Gao, Yongjun Jian*, Analytical solution of magnetohydrodynamic flow of Jeffrey fluid through a circular microchannel, Journal of Molecular Liquids, 2015, 211, 803–811. |
Guangpu Zhao, Yongjun Jian*, Long Chang, Mandula Buren, Magnetohydrodynamic flow of generalized Maxwell fluids in a rectangular micropump under an AC electric field,Journal of Magnetism and Magnetic Materials, 2015, 387, 111–117. |
Mandula Buren, Yongjun Jian*, Electromagnetohydrodynamic (EMHD) flow between two transversely wavy microparallel plates, Electrophoresis, 2015, 36, 1539–1548. |
Shunxiang Li, Yongjun Jian*, Zhiyong Xie, Quansheng Liu, Fengqin Li, Rotating electro-osmotic flow of third grade fluids between two microparallel plates, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2015,470, 240–247. |
Dongqing Si, Yongjun Jian*, Electromagnetohydrodynamic (EMHD) micropump of Jeffrey fluids through two parallel microchannels with corrugated walls, Journal of Physics D: Applied Physic, 2015, 48, 085501. |
2014年 |
Yongjun Jian*, Jie Su, Long Chang, Quansheng Liu, Guowei He, Transient electroosmotic flow of general Maxwell fluids through a slit microchannel, ZAngewMathPhys, 2014, 65, No3, 435- 447. |
Mandula Buren; Yongjun Jian*; Long Chang, Electromagnetohydrodynamic flow through a micro- parallel channel with corrugated walls, Journal of Physics D: Applied Physics, 2014, 47, 425501. |
Zhiyong Xie, Yongjun Jian*, Rotating electroosmotic flow of power-law fluids at high zeta potentials, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014, 461, 231-239. |
Long Chang, Yongjun Jian*, Jie Su, Ren Na, Quansheng Liu, Guowei He, Nonlinear interfacial waves in a circular cylindrical container subjected to a vertical excitation, Wave Motion, 2014, 51, 804-817. |
2013年 |
Liping Bao, Yongjun Jian*, Long Chang, Jie Su, Haiyan Zhang, Quansheng Liu, Time periodic Electroosmotic flow of the generalized Maxwell fluids in a semicircular microchannel, Communications in Theoretical Physics, 2013, 59, 615-622. |
Jie Su, Yongjun Jian*, Long Chang, Quansheng Liu, Transient electro-osmotic and pressure driven flows of two-layer fluids through a slit microchannel, Acta Mechanica Sinica, 2013, 29(4), 534–542. |
Yanjun Sun, Yongjun Jian*, Long Chang, Quansheng Liu, Thermally fully developed electroosmotic flow of power-law fluids in a circular microchannel, Journal of Mechanics, 2013, 29(4), 609-616. |
Lixia Sun, Yongjun Jian*, Long Chang, Haiyan Zhang, Quansheng Liu, Alternating current electro-osmotic flow of the Maxwell fluids through a circular micro-pipe, Journal of Mechanics, 2013, 29, 233-240. |
2012年 |
Xiaoxia Li, Ze Yin, Yongjun Jian*, Long Chang, Jie Su, Quansheng Liu, Transient electro-osmotic flow of generalized Maxwell fluids through a microchannel, Journal of Non-Newtonian Fluid Mechanics, 2012, 187-188, 43–47. |
Jie Su, Yongjun Jian*, Long Chang, Thermally fully developed electroosmotic flow through a rectangular microchannel, International Journal of Heat and Mass Transfer, 2012, 55, 6285–6290. |
長龍,菅永軍*,平行闆微管道間Maxwell流體的高Zeta勢周期電滲流動,物理學報, 2012, 61 (12), 124702. |
Shuyan Deng, Yongjun Jian*, Yuanhong Bi, Long Chang, Haijun Wang , Quansheng Liu, Unsteady electroosmotic flow of power-law fluid in a rectangular microchannelMechanics Research Communications, 2012, 39, 9–14. |
2011年及以前 |
Quansheng Liu, Yongjun Jian*, Liangui Yang, Time periodic electroosmotic flow of the generalized Maxwell fluids between two micro-parallel plates, Journal of Non-Newtonian Fluid Mechanics, 2011, 166, 478–486. |
Quansheng Liu, Yongjun Jian*, Liangui Yang, Alternating current electroosmotic flow of the Jeffreys fluids through a slit microchannel, Physics of Fluids, 2011, 23, 102001. |
Yongjun Jian*, Quansheng Liu, Liangui YangAC electroosmotic flow of generalized Maxwell fluids in a rectangular microchannel, Journal of Non-Newtonian Fluid Mechanics, 2011, 166, 1304–1314. |
Yongjun Jian*, Liangui Yang, Quansheng Liu, Time periodic electro-osmotic flow through a microannulus, Physics of Fluids, 2010, 22, 042001. |
Jieshuo Xie, Yongjun Jian*, Liangui Yang, Strongly nonlinear internal soliton load on a small vertical circular cylinder in two-layer fluids, Applied Mathematical Modelling, 2010, 34, 2089–2101. |
Yongjun Jian*, Qingyong Zhu, Jie Zhang, Yanfeng Wang, Third Order Approximation to Capillary Gravity Short Crested Waves with Currents, Applied Mathematical Modelling, 2009, 33, 2035–2053. |
Yongjun Jian*, Jie Zhang, Quansheng, Liu, Yanfeng Wang, Effect of Mesoscale eddies on underwater sound propagation, Applied Acoustics, 2009, 70, 432–440. |
Yongjun Jian*, Jiemin Zhan, Qingyong Zhu, Short crested wave–current forces around a large vertical circular cylinder, European Journal of Mechanics B/Fluids, 2008, 27(3), 346–360. |
Yongjun Jian*, Xuequan E, Jie Zhang, Capillary effect on the vertically excited surface wave in a circular cylindrical vesselApplied Mathematics and Mechanics (English Edition), 2006, 27(2), 227–234. |
Yongjun Jian*, Xuequan E, Jie Zhang, Damping of vertically excited surface waves in a weakly viscous fluidApplied Mathematics and Mechanics (English Edition), 2006, 27(3), 417–424. |
Yongjun Jian*, Xuequan E, Instability Analysis of Nonlinear Surface Waves in a Circular Cylindrical Container Subjected to a Vertical ExcitationEuropean Journal of Mechanics B/Fluids, 2005, 24(6), 683–702. |
Yongjun Jian*, Xuequan E, Vertically forced surface wave in weakly viscous fluids bounded in a circular cylindrical vesselChinese Physics, 2004, 53(8), 1191–1200. |
Yongjun Jian*, Xuequan E, Jie Zhang, Jun-min Meng, Surface waves in a vertically excited circular cylindrical containerChinese Physics, 2004, 53(10), 1623–1630. |
Yongjun Jian*, Xuequan E, Instability of the vertically forced surface wave in a circular cylindrical containerChinese Physics, 2004, 53(10), 1631–1638. |
Yongjun Jian*, Xuequan E, Jie Zhang, Junmin Meng, The effect of the surface tension of the mode selection of the vertically excited surface wave in a circular cylindrical vesselChinese Physics, 2004, 53(12), 2013–2020. |
Yongjun Jian*, Xuequan E, Liulin Feng, Surface wave patterns and instability in a vertically oscillating circular cylindrical vessel,Journal of Hydrodynamics, SerB, 2004, 16(5), 640– 645. |
菅永軍*,鄂學全, 剛性充液容器内豎直激勵表面波研究進展,力學進展,2004, 34(1), 61–76. |
Jian Yongjun*, E Xuequan, Bai Wei, Nonlinear Faraday waves in a parametrically excited circular cylindrical containerApplied Mathematics and Mechanics (English Edition), 2003, 24(10), 1194–1207. |
菅永軍*,鄂學全,垂直激勵圓柱形容器中的表面波特性研究,應用力學學報, 2004, 21(1), 5-12. |
菅永軍*,鄂學全,垂直激勵圓柱形容器中的表面波結構,水動力學研究與進展 A輯,2003, 18(2), 135-147. |
代表性專利&其他 |
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1. 2019年獲内蒙古自治區“草原英才”工程個人滾動支持。 |
2. 2018年獲第八屆内蒙古大學校長勵學獎優秀教師獎; |
3. 2017年内蒙古自治區新世紀“321人才工程”第一層次人選; |
4. 2016年獲内蒙古自治區優秀科技工作者; |
5. 2016年獲寶鋼優秀教師獎; |
6. 2015年入選内蒙古自治區第五批“草原英才”; |
7. 2014年獲内蒙古自治區優秀研究生指導教師; |
8. 2013年内蒙古自治區高等學校“青年科技領軍人才”獲得者; |
9. 2012年内蒙古自治區新世紀“321人才工程”第二層次人選; |
10. 2010年獲内蒙古自治區自然科學獎三等獎、内蒙古大學第五屆科學技術創新獎; |
11. 2009年獲第七屆内蒙古自治區青年科技獎; |