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高明
教授 博士生导师 硕士生导师
主要任职:高效储能及氢能利用山东省工程研究中心主任
其他任职:高效节能及储能技术与装备山东省工程实验室主任,氢能技术科研带头人工作室负责人
性别:男
毕业院校:山东大学
学历:博士研究生毕业
学位:工学博士学位
在职信息:在职
所在单位:核科学与能源动力学院
入职时间: 2008-05-30
所属院系: 能源与动力工程学院
学科:热能工程
办公地点:山东省济南市历下区经十路17923号,山东大学千佛山校区东配楼
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[1] 赵萃琳. Analysis of effect on temperature field of tire curing process by initial temperatures and condensate discharging. Applied thermal engineering, 257, 2024.
[2] 何锁盈. 光伏组件自然通风冷却系统内肋片布置形式的优化研究. 天津大学学报, 58, 300-308, 2025.
[3] 罗玉. Investigation on a good combination of inlet air spray pre-cooling and Y-type windbreak in a natural draft dry cooling tower. Journal of Wind Engineering and Industrial Aerodynamics, 265, 2025.
[4] . Investigation on the spray strategy for performance enhancement of solar photovoltaic systems. Applied thermal engineering, 272, 2025.
[5] 王宇航. Performance optimization study on the thermal management system of proton exchange membrane fuel cell based on metal hydride hydrogen storage. Energy, 305, 2024.
[6] 陈泽祺. 基于换热管束优化布置的固态储氢反应器储氢性能模拟研究. 《热力发电》, 53, 100-108, 2024.
[7] 周少斌. 基于内管移动的卧式管壳式相变储热器储热性能优化研究. 《热力发电》, 53, 109-117, 2024.
[8] 张晓楠. Investigation on the operation performance of solar panels cooled by a natural draft cooling system. THERMAL SCIENCE AND ENGINEERING PROGRESS, 2024.
[9] 吕斐然. Numerical Simulation of 3D Flow Field and Flow-Induced Noise Characteristics in a T-Shaped Reducing Tee Junction. Fluid Dynamics & Materials Processing, 2023.
[10] 吕斐然. Numerical simulation of structure-borne noise in a T-shaped tee considering fluid-structure interaction. PHYSICS OF FLUIDS, 2023.
[11] 张政清. An exploratory research on performance improvement of super-large natural draft wet cooling tower base d on the reconstructe d dry-wet hybrid rain zone, part 2 Crosswind effects. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2020.
[12] 杨继冲. Influence of three different pitches fillings on the cooling performance of wet cooling towers under crosswind. Applied thermal engineering, 2023.
[13] 徐一丹. The effect of engineering improvement on the cooling capacity in three zones of wet cooling towers. Heat Transfer Research, 1429, 2020.
[14] Wang, Weishu. Water-saving performance study of water conservation and plume abatement device in wet mechanical draft cooling towers. Case Studies in Thermal Engineering, 56, 2024.
[15] 邹健. Field test on ventilation performance for high level water collecting wet cooling tower under crosswind conditions. Applied thermal engineering, 439, 2018.
[16] 郭畅. An experimental study on the radiation noise characteristics of a centrifugal pump with various working conditions. Energies, 2017.
[17] 高明. Thermal performance analysis for high level water collecting wet cooling tower under crosswind conditions. Applied thermal engineering, 568, 2018.
[18] 郭畅. Acoustic distribution study inside centrifugal pump impeller under different blade outlet angles using the Powell vortex sound theory. PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2595, 2020.
[19] 何锁盈. Selection of wetted media for pre-cooling of air entering natural draft dry cooling towers. Applied thermal engineering, 857, 2017.
[20] 步兆彬. Effect of Non-uniform Layout of Packing Coupled with Partition Water Distribution on Thermal Performance of Wet Cooling Tower 填料非均匀布置耦合分区配水对湿式冷却塔热力性能的影响. Dongli Gongcheng Xuebao/Journal of Chinese Society of Power Engineering, 43, 1413-1420, 2023.
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