SCI论文
[1] Xiangdong Lu,
Jianhui Zhao*, Vladimir Markov, Tianyu Wu. Modeling and investigating the fuel heating in injector nozzle hole under action of pressure drop and viscous friction. International Journal of Thermal Scienes, 2024, 205:109296
https://doi.org/10.1016/j.ijthermalsci.2024.109296
[2] Chuanlei Yang, Xiwen Wang,
Jianhui Zhao*, Longguo He. Optimization of the energy management system in hybrid electric vehicles considering cabin temperature. Applied Thermal Engineering, 2024, 242:122504
[3]
Jianhui Zhao*, Shuo Chen, Guichun Yang, Heng Zhang. Simulation study on the cavitation distribution in the ball valve of a common rail injector. International Journal of Engine Research, 2024, 1-13.
[4] Yu Zhiqing, Li Xiang,
Zhao Jianhui*, Shi Lei. Development of Ammonia Reaction Kinetic Mechanism under Engine-Relevant. Energy and Fuels, 2024,38,1:728-741.
[5] Xiangdong Lu,
Jianhui Zhao*, Leonid Grekhov. Research on the influential factors related to the fuel leakage rate in the plunger-sleeve clearance of high pressure common rail system. International Journal of Engine Research, 2023, 25(4): https://doi.org/10.1177/14680874231203278
[6] Yu Zhiqing,
Zhao Jianhui*, Wei Rongqiang. Multi-objective cooperation optimization research on dynamic response and energy loss of high-speed solenoid valve for diesel engine injector. International Journal of Applied Electromagnetics and Mechanics, 2023.
[7]
Jianhui Zhao*, Nan Guo, Xiangdong Lu, et al. Numerical research on characteristics of fuel heating and subcooling in the nozzle hole of common rail injector. International Journal of Heat and Mass Transfer, 2023, 200:123508. (SCI: 000874682800005, Q1,TOP )
https://doi.org/10.1016/j.ijheatmasstransfer.2022.123508
[8]
Jianhui Zhao, Leonid Grekhov*, Dimtry Onishchenko, Ildar Gabitov. Methods for calculating fuel heating in electrically controlled injectors of common rail diesel systems. Fuel, 2021, 305 (SCI :000709483600006, Q1,TOP) https://doi.org/10.1016/j.fuel.2021.121526
[9]
Jianhui Zhao*, Xiangdong Lu, Leonid Grekhov. Experimental study on the fuel heating at the nozzle of the high pressure common-rail injector. Fuel, 2021, 283 (SCI: 000584919700036,Q1,TOP)
https://doi.org/10.1016/j.fuel.2020.119281
[10]
Jianhui Zhao*, Sergey E. Zirka, Yuriy I. Moroz. Duality- derived models of high-speed electromagnetic valves. IEEE Transactions on Industrial Electronics, 2021, 68(10) (SCI: 000670541800077, Q1,TOP) https: //doi/
10.1109/TIE.2020.3022510
[11]
Jianhui Zhao, Leonid Grekhov
*, Xiuzhen Ma, Aleksandr Denisov. Specific features of diesel fuel supply ultra-high pressure. Applied Thermal Engineering, 2020, 179:115699 (SCI: 000560800500061, Q1,TOP)
https://doi.org/10.1016/j.applthermaleng.2020.115699
[12]
Jianhui Zhao*, Xiangdong Lu, Weilong Liu, L. Grekhov. Microscopic characteristics of supersonic natural gas jet in a constant volume chamber under different pressure ratios. Fuel, 2020, 277: 118151 (SCI: 000541255200043, Q1,TOP,)
https://doi.org/10.1016/j.fuel.2020.118151
[13]
Jianhui Zhao, Weillong Liu, You Liu
*. Experimental investigation on the microscopic characteristics of underexpanded transient hydrogen jets. International Journal of Hydrogen Energy, 2020, 45: 16865-16873 (SCI: 000538168400046, Q1,TOP)
https://doi.org/10.1016/j.ijhydene.2020.04.140
[14]
Jianhui Zhao*, S.E. Zirka, I. Moroz, T. Matsuo, Physical Cauer circuits in nonlinear eddy-current modeling. Journal of Magnetism and Magnetic Materials, 2020,508:166850 (SCI: 000535903300001, Q1)
https://doi.org/10.1016/j.jmmm.2020.166850
[15]
Jianhui Zhao*, Weilong Liu, Jialu Zhao, et al. Numerical investigation of gas/liquid two-phase flow in nozzle holes considering the fuel compressibility. International Journal of Heat and Mass Transfer, 2020, 147:118991 (SCI: 000505101200102, Q1,TOP) https://doi.org/
10.1016/j.ijheatmasstransfer.2019.118991
[16]
Jianhui Zhao*, Sergey E. Zirka, Yuriy I. Moroz, Gesare M. Arturi, Structure and properties of the hybrid and topological transformer models. International Journal of Electrical Power and Energy Systems, 2020, 118: 105785 (SCI: 000518691600028 , Q1)
https://doi.org/10.1016/j.ijepes.2019.105785
[17]
Jianhui Zhao*, Shunan Zhao, Leonid Grekhov, Study on transient fuel hydrodynamic force characteristics of high- speed solenoid valve for common rail injector. International Journal of Automotive Technology, 2020, 21(5): 1257-1269 (SCI: 000574473700019, Q2,)
https://doi.org/10.1007/s12239-020-0119-3
[18]
Jianhui Zhao*, Leonid Grekhov, Pengfei Yue, Limit of fuel injection rate in the common rail system under ultra-high pressures. International Journal of Automotive Technology, 2020, 21(3): 6449-656 (SCI :000515002400012, Q2)
https://doi.org/10.1007/s12239-020-0062-3
[19]
Jianhui Zhao*, Pengfei Yue, Kebiao Wei, Eddy current effects on the dynamic response of high-speed solenoid for common rail injector. International Journal of Applied Electromagnetics and Mechanics, 2020, 62(3): 607-618 (SCI: 000521595800012, Q3).
https://doi.org/10.3233/JAE-190047
[20]
Jianhui Zhao*, Weilong Liu, Leonid Grekhov, Visualization research on influence of ambient pressure on CNG jet characteristics of gas injector with outward-opening nozzle. Fuel, 2019, 257:116084 (SCI: 000486413500097, Q1,TOP)
https://doi.org/10.1016/j.fuel.2019.116084
[21] Pengfei Yue,
Jianhui Zhao*, Keibiao Wei, Xiuzhen Ma, The fluid-structure-thermal coupled characteristics of the leakage rate of piston couples interface for common-rail injector. Proc IMechE Par C: J Mechanical Engineering Science, 2019, 233(16):5826-5835 (SCI:000479269800020, Q2,)
https://doi.org/10.1177/0954406219856032
[22]
Jianhui Zhao*, Pengfei Yue, Leonid Grekhov, at al., Temperature and frequency dependence of electrical iron effects on electromagnetic characteristics of high-speed solenoid valve for common rail injector. International Journal of Applied Electromagnetics and Mechanics, 2019, 60: 173-185 (SCI:000468317600003, Q3).
https://doi.org/10.3233/JAE-180022
[23]
Jianhui Zhao*
, Pengfei Yue, Leonid Grekhov at al., Hold current effects on the power losses of high-speed solenoid valve for common-rail injector. Applied Thermal Engineering, 2018, 128:1579-1587 (SCI: 000414884700147, Q 1, TOP)
https://doi.org/10.1016/j.applthermaleng.2017.09.123
[24]
Jianhui Zhao*, M. Wang, Z. Wang, at al., Different boost voltage effects of the dynamic response and energy losses of high-speed solenoid valves. Applied Thermal Engineering, 2017, 123: 1494-1503 (SCI:000406564600137, Q1,TOP).
https://doi.org/10.1016/j.applthermaleng.2017.05.117
[25]
Jianhui Zhao, Yong Shi
*, Leonid Grekhov, at al., Effects of structure parameters on the static electromagnetic characteristics of high speed solenoid valves. International Journal of Applied Electromagnetics and Mechanics, 2017, 55:45-60 (SCI:000407747700004, Q3)
https://doi.org/10.3233/JAE-160129
EI论文
[1] 赵建辉,徐煜,杨贵春,徐丹,王伟. 基于喷雾动量法的共轨喷油器喷油稳定性实验研究. 西南交通大学学报,2024.
[2] 赵建辉,格列霍夫,王章峻,等. 共轨喷油器高速电磁阀电磁力影响因素分析. 哈尔滨工程大学学报,2018, 4:703-708.
[3] 赵建辉,格列霍夫,范立云,等. 高速电磁阀静态电磁力数学模型研究. 哈尔滨工程大学学报,2017,12:1884-1889.
[4] Jianhui Zhao*, Kebiao Wei, Pengfei Yue , Investigation of maximum temperature rise on high pressure common rail injector nozzle, SAE Technical Paper, 2019-01-0276.
[5] Jianhui Zhao*, Weilong Liu , Leonid Grekhov , Visualization and analysis of gaseous jet process for an outward-opening nozzle, SAE Technical Paper, 2019-01-0275.
[6] Jianhui Zhao*, Pengfei Yue, Kebiao Wei, Leonid Grekhov, Investigating effects of different influence factors on the dynamic response of a common-rail injector, SAE Technical Paper, 2019-01-0272.
授权的国家软件著作权
[1] 赵建辉,杨津韬,卢相东. 高压共轨系统动态喷射预测设计软件[P]. 国家计算机软件著作权:2023SR0789350.
[2] 赵建辉,杨津韬,蓝中泽. 考虑各孔喷油不均匀性的高压共轨系统计算软件[P]. 国家计算机软件著作权:2023SR0789349.
[3] 赵建辉,杨津韬,王琦. 流量系数可变的高压共轨系统数字化仿真计算软件[P]. 国家计算机软件著作权:2023SR0789348.
[4] 赵建辉,杨津韬,王思哲 高压共轨燃油系统数字化仿真平台[P]. 国家计算机软件著作权:2024SR0562572.
[5] 赵建辉,杨津韬,吴天宇 高压油管内考虑震荡衰减的压力波动计算软件[P].国家计算机软件著作权:2024SR0563532.
[6] 赵建辉,杨津韬,谭翔 基于电磁对偶拓扑的高速电磁阀预测仿真软件[P].国家计算机软件著作权:2024SR0562560.
[7] 赵建辉,王琦,杨津韬. 考虑针阀撞击反弹的高压共轨喷油器喷射特性计算软件[P].国家计算机软件著作权:2024SR0564498.
[8] 赵建辉,卢相东,李响. 高压共轨系统数字化仿真平台数据处理分析软件[P].国家计算机软件著作权:2024SR0563022.
[9] 杨传雷,王檄文,赵建辉. 基于多种优化方法的高压共轨系统喷油特性设计优化软件[P]. 国家计算机软件著作权:2024SR0563024.
[10] 赵建辉,卢相东. 双阀增压式高压共轨系统喷射特性计算软件 [P]. 国家计算机软件著作权:2019SR1403235.
[11] 赵建辉,卢相东. 带有增压活塞的高压共轨燃油系统增压过程计算软件 [P]. 国家计算机软件著作权:2019SR1403270.
[12] 赵建辉,卢相东. 单增压燃油系统循环喷油量计算软件 [P]. 国家计算机软件著作权:2019SR1403249.
[13] 赵建辉,卢相东. 可控喷油速率的高压共轨计算软件 [P]. 国家计算机软件著作权:2019SR1403242.
[14] 赵建辉,魏克标. 高压共轨喷油器喷嘴处热效应计算软件 [P]. 计算机软件著作权:2019SR0666115.
[15] 赵建辉,岳鹏飞,魏克标. 共轨喷油器控制室内燃油流动计算软件 [P]. 计算机软件著作权:2018SR522123.
[16] 赵建辉,岳鹏飞,魏克标. 共轨喷油器燃油喷射特性计算软件 [P]. 计算机软件著作权:2018SR542515.
[17] 赵建辉,岳鹏飞,魏克标.. 高压油泵滚轮动力学计算软件 [P]. 计算机软件著作权: 2018SR026829.
[18] 赵建辉,岳鹏飞,魏克标. 高压油泵柱塞偶件燃油泄流量计算软件 [P]. 计算机软件著作权:2018SR080766.
[19] 赵建辉,岳鹏飞,魏克标. 高压油泵燃油增压过程计算软件 [P]. 计算机软件著作权:2018SR084366.
[20] 赵建辉,岳鹏飞,魏克标, 等. 共轨喷油器供油速率对燃油喷射影响特性计算软件 [P]. 计算机软件著作权:2018SR633085.