娄振

时间:2018-04-04浏览:325设置



一、个人简介

娄振,博士,副教授(校聘),硕士生导师,20216月博士毕业于中国矿业大学(北京),获得工学博士学位,麦吉尔大学(McGill University)访问学者。近年来,主持国家自然科基金青年项目1项、省部级项目3项,参与国家重点研发计划、国家自然科学基金等科研项目多项。担任EnergyPSEPGas Science and EngineeringFuel等多个国际期刊审稿人,以第一作者或通讯作者在国内外学术期刊发表论文20余篇,获授权发明专利5项。

主要研究方向:(1)矿井瓦斯灾害防治、(2)新能源安全

电子邮箱:loganlz@163.com

科研主页:https://www.researchgate.net/profile/Zhen-Lou-2

二、教育工作经历

2022.05~,郑州轻工业大学,建筑环境工程学院,校聘副教授

2021.022022.02,麦吉尔大学(加拿大),土木工程系,访问学者;

2017.092021.06,中国矿业大学(北京),安全科学与工程,工学博士;

2014.092017.06,河南理工大学,安全工程,工程硕士;

2010.092014.06,河南理工大学,公共安全管理/土木工程,双学士。

三、代表性成果

1. 主持科研/教学项目:

[1] 国家自然科学基金青年项目52404246抽采钻孔周边再生裂隙中纤维素水凝胶流动特征及填充降渗机制, 2025-2027, 30, 主持;

[2] 河南省重点研发与推广专项(科技攻关)项目, 232102320232, 基于液氮快速降温的储能电站锂离子电池防复燃高效灭火技术, 2023-2024, 主持;

 [3] 教育部产学合作协同育人项目, 230702910240229,基于多物理场仿真技术的安全工程专业课程教学改革探索与实践, 2023-2024, 5万, 主持;

[4] 河南省瓦斯地质与瓦斯治理重点实验室开放课题, WS2023B02, 抽采钻孔周边非均质裂隙煤体精准填充降渗机制, 2024-2025, 2, 主持;

 [5] 中石化中原油田分公司横向项目, 消防灭火抛沙机研究与应用, AQ23-002, 2023-2024, 46.9, 主持;

[6] 郑州轻工业大学博士科研基金, 2022BSJJZK24, 抽采钻孔周边裂隙密封材料及特性研究, 2023-2025, 10, 主持;

2.代表性论文:

[1] Lou Z., Wang K.*, Kang M., et al. 2024. Plugging methods for underground gas extraction boreholes in coal seams: A review of processes, challenges and strategies. Gas Science and Engineering. 122, 205225.  (SCI/ JCR 1/Top/Review/高被引

[2] Lou Z., Wang K*., Zhao W., et al. 2024. Experimental investigation on visualization and quantitative characterization of filling and plugging performances of fractures in coal, Physics of Fluids. 36, 036609. (SCI/ JCR 1) 

[3] Lou Z., Wang K.*, Zang J., et al. 2021. Effects of permeability anisotropy on coal mine methane drainage performance. Journal of Natural Gas Science and Engineering. 86, 103733.  (SCI/ JCR 1/Top)

[4] Lou Z., Huang J., Yao H*., et al. 2024. Inhibition performances of lithium-ion battery pack fires by fine water mist in an energy-storage cabin: A simulation study Physics of Fluids. 36, 045141. (SCI/ JCR 1)

[5] Wang K., Lou Z.*, Guan L., et al. 2020. Experimental study on the performance of drilling fluid for coal seam methane drainage boreholes. Process Safety and Environmental Protection. 138, 246-255. (SCI/ JCR 1/Top) 

[6] Wang K., Lou Z.*, Wei G., et al. 2019. A novel anti-air-leakage method and an organic polymer material for improving methane drainage performance. Process Safety and Environmental Protection. 129, 152-162. (SCI/ JCR 1/Top) 

[7] Yao H., Huang J., Lou Z.*, et al. 2023. Simulation study on oil pressure problems caused by internal faults in oil-immersed transformers. Process Safety and Environmental Protection. 175, 190-198. (SCI/ JCR 1/Top) 

[8] Yao H., Xing M., Lou Z.*, et al. 2024. Simulation of fire combustion process in valve hall of DC converter power station. Journal of Loss Prevention in the Process Industries. 91, 105401. (SCI/ JCR 2)

[9] Wang K., Lou Z.*, Wei G., et al. 2020. Reasonable minimum sealing length of in-seam boreholes for coal mine methane drainage: a case study. Energy Sources Part A-Recovery Utilization and Environmental Effects. 42(18), 2199-2213. (SCI/ JCR 3)

[10] 娄振,魏国营,张书进,.煤层动态裂隙充填瓦斯抽采技术试验研究[J].中国安全科学学报, 2016, 26(10):127-132. (卓越期刊)

3.授权专利

[1] 一种煤层动态裂隙自动充填密封装置,ZL201620717472.3 (1)

[2] 一种矿用注液自动控制设备, ZL201620717474.2 (1)

[3] 一种紧凑型燃料电池用防火监控系统,ZL 202211491308.1 (2)

[4] 一种用于电动汽车的快速灭火装置 ZL202210954561.X (3)

[5] 一种用于电动汽车的快速灭火装置,ZL202210954561.X (3)




返回原图
/