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王继红

领域:节能环保产业 学校:大连理工大学职称:副教授

高载能介质相尺度演化与热流动机理 毒性污染物传播规律与感染风险预测 建造环境通风与热舒适数值评价方法...

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教育背景

分别于2008年、2013年在大连理工大学取得学士学位、博士学位

工作经历

在2015年至2017年,进入美国弗吉尼亚理工大学机械工程学院CREST实验室开展博士后工作。

项目课题经历

主持国家自然科学基金、国家重点研发计划子课题、中国博士后科学基金特别资助和一等资助、中央高校基本科研业务专题等7项,参与国家863计划、国家973计划、国家重点研发计划、美国国家研究基金等10项

论文、成果、著作等

代表性论文 [01] Wang J., Huo Q., Zhang T., Wang S., Battaglia F. Numerical investigation of gaseous pollutant cross-transmission for single-sided natural ventilation driven by buoyancy and wind. Building and Environment, 2020, 172: 106705. [02] Wang J., Zhang T., Wang S., Battaglia F. Numerical investigation of single-sided natural ventilation driven by buoyancy and wind through variable window configurations. Energy and Buildings, 2018, 168: 147-164. [03] Wang J., Zhang T., Wang S., Battaglia F. Gaseous pollutant transmission through windows between vertical floors in a multistory building with natural ventilation. Energy and Buildings, 2017, 153: 325-340. [04] Wang J., Wang S., Zhang T., Battaglia F. Assessment of single-sided natural ventilation driven by buoyancy forces through variable window configurations. Energy and Buildings, 2017, 139: 762-779. [05] Wang J., Battaglia F., Wang S., Zhang T., Ma Z. Flow and heat transfer characteristics of ice slurry in typical components of cooling systems. International Journal of Heat and Mass Transfer, 2019, 141: 922-939. [06] Wang J., Wang S., Zhang T., Battaglia F. Mathematical and experimental investigation on pressure drop of heterogeneous ice slurry flow in horizontal pipes. International Journal of Heat and Mass Transfer, 2017, 108: 2381-2392. [07] Wang J., Wang S., Zhang T., Battaglia F. Numerical and analytical investigation of ice slurry isothermal flow through horizontal bends. International Journal of Refrigeration, 2018, 92: 37-54. [08] Wang J., Wang S., Zhang T., Liang Y. Numerical investigation of ice slurry isothermal flow in various pipes. International Journal of Refrigeration, 2013, 36: 70-80. [09] Wang J., Niu L., Zhang T., Wang S. Detachment of adhered particles from a cloth surface subjected to a rod strike. Aerosol Science and Technology, 2019, 53: 435-448. [10] Wang J., Zhang T., Zhou H., Wang S. Inverse design of aircraft cabin environment using computational fluid dynamics-based proper orthogonal decomposition method. Indoor and Built Environment, 2018, 27: 1379-1391.

专利、著作版权等

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