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宋克伟
2024-11-27 点击:
基本情况
姓名:宋克伟
职称:教授
职务:副院长
学历:博士研究生
类别:博导、硕导
联系方式:0931-4956983
电子邮箱:376768922@qq.com
工作单位:机电工程学院
宋克伟
主讲课程

《传热学》《热管理技术》《储能原理》《高等流体力学》《热工自动控制原理》《热工测试技术》等

研究方向及领域

1.招生专业:

(1)博士研究生:080204车辆工程(热工方向),082304载运工具运用工程(载运工具热工技术及应用方向)

(2)硕士研究生:0807:动力工程及工程热物理各方向;080204:车辆工程/机械工程;0858:动力工程/储能技术/清洁能源技术;0855:机械工程/车辆工程

2.研究方向:

流动与传热仿真、电池/芯片热管理技术、清洁能源热利用技术;微重力热磁对流;先进热交换设备、强化传热与节能技术、储能技术及应用、过程装备热工仿真与优化、载运工具热工技术及应用方向等。

教学科研项目

1. 主持国家自然科学基金项目等国家级项目5项;

2. 主持甘肃省杰出青年基金、省自然基金、陇原青年创新人才扶持计划、百名青年优秀人才扶持计划、基础拔尖人才计划及重点研发计划等纵向项目8项;

3. 主持企业委托横向项目10余项;

代表性教学科研成果

1. 获甘肃省自然科学一等奖1项;甘肃省科技进步一等奖1项;甘肃省技术发明二等奖1项;

2. 获"甘肃省领军人才"、"陇原青年英才"、甘肃省“飞天学者”特聘教授、甘肃省“飞天学者”青年学者、甘肃省青年教师成才奖、甘肃省优秀学位论文指导教师;入选“陇原青年创新人才扶持计划”“百名青年优秀人才扶持计划”、“基础拔尖人才计划”等;Tokyo Metropolitan University访问学者;

3. 担任国家自然科学基金函评专家、教育部学位中心论文通讯评议专家、中国博士后基金函评专家、甘肃省科技专家、甘肃省专利奖励/评审委员、兰州交通大学学报编委等;《International Journal of Heat and Mass Transfer》、《Applied Thermal Engineering》、《International Journal of Thermal Sciences》、《International communication in Heat and Mass Transfer》、《Experimental Heat Transfer》等国内外五十余个期刊审稿人,累计审稿逾600篇;

4. 国内外发表论文90余篇,SCI检索70余篇,高被引论文多篇;授权国家发明专利27件,实用新型22件,国际发明专利4件;

5. 近三年(2021-2024)主要学术论文如下:

(1) Improving the thermal-hydraulic performance of air-cooled battery thermal management system by flow splitters. Journal of Energy Storage, 2024, 101, 113818.

(2) Thermal performance of cascaded latent heat thermal energy storage units constructed based on solid-liquid interface information. International Communications in Heat and Mass Transfer, 2024, 158, 107929.

(3) Experimental investigation of thermal performance in a shell-and-tube phase change thermal energy storage unit with an inner square tube. Journal of Energy Storage, 2024, 99, 113365.

(4) Numerical investigation of thermal characteristics of double-tube heat exchangers with alternate twist direction and different phase angles of the inner oval tube. Applied Thermal Engineering, 2024, 255, 123979.

(5) Performance of a combined battery thermal management system with dual-layer phase change materials and air cooling technologies. Applied Thermal Engineering, 2024, 254, 123865.

(6) Effect of phase angle on thermohydraulic performance of an annular tube formed by co-twisted oval tubes. Physics of Fluids, 2024, 36, 107155.

(7) Effect of wavy delta winglet vortex generators on heat transfer performance of a fin-and-tube heat exchanger. International Journal of Heat and Fluid Flow, 2024, 108, 109485.

(8) Performance promotion by novel fin configurations with ellipsoidal dimple-protrusion for a circle tube-fin heat exchanger. International Communications in Heat and Mass Transfer, 2024, 157, 107731.

(9) Performance improvement of a thermal management system for Lithium-ion power battery pack by the combination of phase change material and heat pipe. Journal of Energy Storage. 2024, 82, 110512.

(10) Thermal performance of a novel dual-PCM latent thermal energy storage unit with an inner spiral coil tube. Journal of Energy Storage, 2024, 88, 111564.

(11) Thermal performance promotion of a novel double-tube heat exchanger by helical fin with perforations. International Communications in Heat and Mass Transfer, 2024, 150, 107189.

(12) Investigation of the effect of a cylindrical heater on saturated pool boiling heat transfer. International Communications in Heat and Mass Transfer, 2024, 152, 107269.

(13) Thermal performance augmentation of inner spiral finned tube for linear fresnel solar reflector. Thermal Science and Engineering Progress, 2024, 49, 102483.

(14) Thermal performance improvement of a circular tube-and-fin heat exchanger by ellipsoidal protrusions on fin surfaces. International Journal of Thermal Sciences, 2024, 196, 108746.

(15) Performance optimization of a wavy finned-tube heat exchanger with staggered curved vortex generators. International Journal of Thermal Sciences 2023(183):107830.

(16) Thermal hydraulic performance augmentation by petal-shaped ribs in a two-pass cooling channel. Case Studies in Thermal Engineering, 2022, 40, 102542.

(17) Thermodynamic characteristics of a novel combination of three-start twisted tube and oval dimples. Case Studies in Thermal Engineering, 2022 (37) 102284.

(18) Thermal-hydraulic characteristic of a novel wavy fin-and-circle tubeheat exchanger with concave curved vortex generators. Int. J. Heat Mass Tran., 194 (2022) 123023.

(19) Heat transfer enhancement of a double pipe heat exchanger by Co-Twisting oval pipes with unequal twist pitches. Case Studies in Thermal Engineering, 28(2021), 101411.

(20) The optimal longitudinal location of curved winglets for better thermal performance of a finned-tube heat exchanger. International Journal of Thermal Sciences, 167 (2021) 107035.

(21) Thermal performance enhancement of a double-tube heat exchanger with novel twisted annulus formed by counter-twisted oval tubes, International Journal of Thermal Sciences, 164 (2021) 106892.