2012-2013,省教育厅教改项目,传热与节能视频公开课,项目负责人
代表性论文专著
1. A Study on the Heat Transfer Characteristics of Steel Plate in the Matrix Laminar Cooling Process[J]. Materials, 2021, 14(19): 5680. (SCI)
2. 层流冷却传热系数对金属物料温度场的影响[J]. 过程工程学报, 2021, 21(9):9.
3. Bottleneck of slab thermal efficiency in reheating furnace based onenergy apportionment model [J]. ENERGY. 2018 (150) 1058-1069. ( SCI)
4. Variations on Billet Gas Consumption Intensity of Reheating Furnace in Different Production States. Applied Thermal Engineering. 2018,129 :1058–1067.(SCI)
5. Fluctuation Characteristic of Billet Region Gas Consumption in Reheating Furnace Based on Energy Apportionment Model. Applied Thermal Engineering. 2018,136 :152–160.(SCI)
6. Research on Energy Consumption System of iron and steel enterprise with Bottleneck. International Journal of Engineering Systems Modelling and Simulation. 2018,10(2):103-110.
7. Influence of the Production Fluctuation on the Process Energy Intensity in Iron and Steel Industry [J]. Advances in Production Engineering & Management. 2017,12(1):75-87. (SCI)
8. An energy apportionment model for reheating furnace in a hot rolling mill – A case study [J]. Applied Thermal Engineering, 2017, 112: 174-183. (SCI)
9. An energy intensity optimization model for production system in iron and steel industry [J]. Applied Thermal Engineering. 2016,100:285-295. (SCI)
10. Study on Material and Energy Flow Analysis and Waste Heat Utilization Technology of Iron Making Process. ICFMD 2015.7-13.(ISTP)
11. Impact of material and energy flow variation-based iron/steel ratio on production cost [J]. Journal of Southeast University (English Edition) 2015,31(3):375-379.(EI)
12. Numerical simulation of slab heating process in a regenerative walking beam reheating furnace[J]. International Journal of Heat & Mass Transfer, 2014, 76(6):405-410. (SCI)
13. The influential factors of energy consumption based on the analysis of material and energy flow in coking process-step [C]. Environment, Energy and Applied Technology-Proceedings of the 2014 3rd International Conference on Frontier of Energy and Environment Engineering (ICFEEE 2014). 783-786. (EI)
14. Three-dimensional simulation of the pulverized coal combustion inside blast furnace tuyere[J]. Applied Mathematical Modelling, 2010, 34(11):3536-3546.
15. Simulation of steel coil heat transfer in a high performance hydrogen furnace. Heat transfer Engineering, 2007, 28(1): 25-30 (EI &SCI) .
16.Simulation of steel coil heat transfer in PHP furnace.ACTA METALLURGICA SINICA(ENGLISH LETTERS), 2005, 18(5):647~652.
17. Development of process energy intensity formula under different state variables. Journal of Harbin of Technology (New Series), 2004, 11(6): 694-696. (EI).
18. 热轧加热炉能效影响因素分析及在线评价系统开发[J].冶金能源,2021,40(01):3-7+23.
19. 烧结用双旋流烧嘴的燃烧特性数值模拟[J].冶金能源,2018,37(06):40-44.
20. 鱼雷罐罐体温降与内衬厚度关系特性分析[J].安徽工业大学学报(自然科学版),2016,02:95-99.
21. 利用炼钢工艺处理废塑料的工业试验研究[J].工业加热,2016,01:30-32.
22. 转炉工艺处理废塑料的物料平衡和热量平衡分析[J].工业加热,2015,03:40-41.
23. 钢铁企业系统能耗影响因素分析[J].钢铁,2014,04:86-89.
24. 低品位余热氨水吸收式制冷机理论与实验研究[J].低温与超导,2014,04:62-66.
25. 红外热像测温技术对二冷区冷却均匀性的研究[J].热加工工艺,2014,23:86-89.
26. 一种水冷式扩散吸收式制冷机实验研究[J].低温与超导,2014,01:74-77.
27. 洗涤式燃气调压器的稳压性能研究[J].冶金能源,2015,01:47-51.
28. 捣固焦炉高压氨水消烟的数值模拟[J].安徽工业大学学报(自然科学版),2015,03:245-250.
专利及软件著作权
1. 一种高温液态渣的余热回收系统[P].安徽:CN111394528A,2021-07-02
2. 一种粒料煅烧回转窑产品余热直吸式回收方法[P].安徽:CN107449286A,2017-12-08.
3. 一种基于高温渣余热回收的高炉熔渣干法处理方法[P].安徽:CN106521056A,2017-03-22.
4. 一种冷床台车底部内侧动密封装置及其密封方法[P].安徽:CN106403607A,2017-02-15.
5. 一种热解装置的使用方法[P].安徽:CN106147810A,2016-11-23.
6. 一种抗粘结荒煤气的管束式余热回收系统[P].安徽:CN105602582A,2016-05-25.
7. 一种抗粘结荒煤气的热管式余热回收系统[P].安徽:CN105605954A,2016-05-25.
8. 一种金属管连续加热喷涂系统及其使用方法[P].安徽:CN105562263A,2016-05-11.
9. 一种粒料煅烧回转窑产品余热环形间壁式回收系统及方法[P].安徽:CN104964572A,2015-10-07.
10. 一种粒料煅烧回转窑产品余热直吸式回收系统及方法[P].安徽:CN104949537A,2015-09-30.
11. 一种抗粘结自流焦炉荒煤气余热回收换热单元的施工方法[P].安徽:CN104697361A,2015-06-10.
12. 一种用于燃气预处理的调压装置[P].安徽:CN102841190A,2012-12-26.
13. 浓度自适应型扩散-吸收式制冷机[P].安徽:CN101839583A,2010-09-22.
14. 压缩-吸收-扩散复合式制冷装置及其制冷循环方法[P].安徽:CN101344345,2009-01-14.
15. 一种金属管道内壁喷涂工艺[P].安徽:CN106824638A,2017-06-13.
16. 一种基于高温渣余热回收的高炉熔渣干法处理装置[P].安徽:CN106435068A,2017-02-22.
17. 一种烧结冷却机及其动密封设备[P].安徽:CN106403621A,2017-02-15.
18. 一种连续清灰再生过滤式除尘器[P].安徽:CN105749649A,2016-07-13.
19. 一种金属管加热喷涂装置及其使用方法[P].安徽:CN105562262A,2016-05-11.
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