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王巍巍
2024-09-03 点击:
基本情况
姓名:王巍巍
职称:副教授
职务:能动系副主任
学历:博士
类别:
联系方式:
电子邮箱:wangww2016@lzjtu.edu.cn
工作单位:机电学院能动系&铁道车辆热工教育部重点实验室
王巍巍
主讲课程

《工程热力学》、《热工基础》、《文献检索及应用能力实训》、《多相动力学与传热》、《高等工程热力学》

研究方向及领域

学硕:

1.动力工程及工程热物理--专业代码(080701~080706)

2.车辆工程(080204)--04铁道车辆热工

专硕:

1.车辆工程(085502)--04铁道车辆热工

2.能源动力(085802)--01~07方向

研究方向:储能科学与技术,太阳能热利用,能源高效利用及节能理论,对流传热及其数值预测,先进热管理技术,车辆热工等

教学科研项目

(1)国家自然学基金项目3项

(2)国家级一流课程建设项目1项

(3)甘肃省教育厅项目2项

(4)甘肃省一流专业建设项目1项

(5)甘肃省一流课程建设项目2项

(6)大学生创新创业训练计划项目国家级1项、省级1项和校级6项

代表性教学科研成果

1.甘肃省高校教师教学创新大赛一等奖

2.中国国际“互联网+”大学生创新创业大赛校赛铜奖2项,优秀奖2项

3.近几年公开发表的部分论文:

(1)Towsectional optimized thermodinamical cycle using different renewable energies including geothermal and biogas to produce stable productions,Renewable Energy, 2024, 220, 119617

(2)Multi-aspect investigation and multicriteria optimization of a novel solar-geothermal-based polygeneration system using flat plate and concentrated photovoltaic thermal solar collectors,Process Safety and Environmental Protection, 2023, 174: 485-509

(3)STUDY ON THE RATE OF O 2 CONSUMPTION AND PURIFICATION OF TAIL BIOGAS WITH A BIOFILTER IN THE COMPOSTING PROCESS,Ecological Chemistry and Engineering,2022, 29(1): 87-97

(4)Effect of organic load regulation on anaerobic digestion performance and microbial community of solar-assisted system of food waste,Water Reuse and Desalination,2022, 12(2): 260-273

(5)Prediction of the main characteristics of the shell and tube bundle latent heat thermal energy storage unit using a shell and single-tube unit,Applied Energy,2022, 323(0): 119633

(6)Heat transfer augmentation characteristics of a fin punched with curve trapezoidal vortex generators at the rear of tubes,Thermal science,2022, 26(48): 3529-3544

(7)Analysis of enzyme activity and microbial community structure changes in the anaerobic digestion process of cattle manure at sub-mesophilic temperatures,Green Processing and Synthesis,2021, 10(1): 644-657

(8) Parameter effect of a phase change thermal energy storage unit with one shell and one finned tube on its energy efficiency ratio and heat storage rate,Applied Thermal Engineering, 2016, 93: 50-60

(9) The energy efficiency ratio of heat storage in one shell-and-one tube phase change thermal energy storage unit,Applied Energy, 2015, 138: 169-182

(10) Numerical study of the heat charging and discharging characteristics of a shell-and-tube phase change heat storage unit,Applied Thermal Engineering, 2013, 58(1–2): 542-553

(11) Numerical analysis and parameters optimization of shell-and-tube heat storage unit using three phase change materials.Renewable Energy, 2013, 59: 92-99.

(12) Exergy analysis of two phase change materials storage system for solar thermal power with finite-time thermodynamics.Renewable Energy, 2012, 39 (1): 447-454.

(13) Optimization of solar-powered Stirling heat engine with finite-time thermodynamics.Renewable Energy, 2011, 36 (1): 421-427.