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个人信息:Personal Information
教师拼音名称:sunsiliang
出生日期:1993-05-07
电子邮箱:sunsiliang@ujs.edu.cn
入职时间:2024-08-01
所在单位:能源与动力工程学院
学历:博士研究生毕业
性别:男
学位:博士
在职信息:在职
毕业院校:韩国庆尚国立大学
扫描关注
- nullSlit Aspect Ratio Effect on Flow Instability and Heat Transfer Characteristics ofWavy Vortex Flow[SCI].Arabian Journal for Science and Engineering,201944:7767-7777
- nullNumerical investigation of flow and heat transfer between concentric cylinders with slit wall[SCI].Case Studies in Thermal Engineering,202022:100783
- nullNumerical Simulations of Heat Transfer Performance of Taylor–Couette Flow in Slit Model[SCI].Arabian Journal for Science and Engineering,202146:7153-7170
- nullHeat transfer characteristics of Taylor–Couette flow with axially distributed slits using field synergy principle and entropy generation analysis[SCI].International Communications in Heat and Mass Transfer,2021129:105699
- nullHeat transportation performance and entropy generation analysis of Iron (II, III) oxide microparticles on Taylor Couette flow over a slit wall[SCI].International Communications in Heat and Mass Transfer,2022139:106479
- nullHeat transfer performance prediction of Taylor–Couette flow with longitudinal slits using artificial neural networks[SCI].Applied Thermal Engineering,2022221:119792
- nullConvective heat transfer and entropy generation evaluation in the Taylor–Couette flow under the magnetic field[SCI].International Journal of Mechanical Sciences252:108373
- nullMulti-objective optimization of heat transfer performance and power consumption of Taylor-Couette flow with elliptical helical slits wall[SCI].International Journal of Thermal Sciences,2024208:109474
- nullEffects of axial elliptical slit on convective heat transfer and entropy generation evaluation in Taylor–Couette flow[SCI].International Communications in Heat and Mass Transfer,2025163:108722
- nullNumerical simulation and machine learning study on heat transfer enhancement of nanofluids in Taylor–Couette flow with an elliptical slit surface[SCI].International Communications in Heat and Mass Transfer,2025163:108788