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: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: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
- 联系方式:0531-88399008
访问量:
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[121]
高明.
动叶可调轴流风机进出口气动噪声的数值模拟.
声学技术,
38,
2019.
-
[122]
王蕊.
Effect of Inlet Air Turbulence on the Cooling Performance of Solar Enhanced Dry Cooling Towers.
2019.
-
[123]
郭畅.
Acoustic distribution study inside centrifugal pump impeller under different blade outlet angles usi.
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE,
234,
2595,
2020.
-
[124]
高明.
Theoretical calculation model and variable condition analysis research on the water splashing noise .
NOISE CONTROL ENGINEERING JOURNAL,
68,
2020.
-
[125]
高明.
The effects of water droplet diameter distribution in the rain zone on the cooling capacity and wate.
International Journal of Thermal Sciences,
2021.
-
[126]
高明.
Numerical Simulation of Axial Inflow Characteristics and Aerodynamic Noise in a Large-Scale Adjustab.
Fluid Dynamics and Materials Processing,
2020.
-
[127]
高明.
Numerical simulation on the three kinds of water droplet diameter treatments in rain zone of wet coo.
International journal of heat and mass transfer,
2021.
-
[128]
张政清.
An exploratory research on performance improvement of super-large natural draft wet cooling tower ba.
International journal of heat and mass transfer,
160,
2020.
-
[129]
徐一丹.
THE EFFECT OF ENGINEERING IMPROVEMENT ON THE COOLING CAPACITY IN THREE ZONES OF WET COOLING TOWERS.
Heat Transfer Research,
51,
1429,
2020.
-
[130]
郭畅.
A Numerical Study on the Distribution and Evolution Characteristics of an Acoustic Field in the Time.
Applied Sciences-Basel,
9,
2019.
-
[131]
郭畅.
The effect of blade outlet angle on the acoustic field distribution characteristics of a centrifugal.
Applied Acoustics,
155,
297,
2019.
-
[132]
郭畅.
Investigation on the flow-induced noise propagation mechanism of centrifugal pump based on flow and .
PHYSICS OF FLUIDS,
32,
2020.
-
[133]
郭畅.
Acoustic distribution study inside centrifugal pump impeller under different blade outlet angles usi.
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE,
2020.
-
[134]
周扬.
Case study: Theoretical calculation model and variable condition analysis research on the water-spla.
NOISE CONTROL ENGINEERING JOURNAL,
68,
137,
2020.
-
[135]
郭畅.
A Review of the Flow-Induced Noise Study for Centrifugal Pumps.
Applied Sciences-Basel,
10,
2020.
-
[136]
张政清.
An exploratory research on performance improvement of super-large natural draft wet cooling tower ba.
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,
142,
2019.
-
[137]
孙奉仲 , 赵元宾 , 高明 and 吕冬强.
Research on the Air Flow Field Inside the Water Collecting Devices of the Cooling Tower With the WCD.
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical,
19,
212,
2018.
-
[138]
何锁盈 , 孙奉仲 , 高明 and 邹健.
Field test on ventilation performance for high level water collecting wet cooling tower under crossw.
Applied Thermal Engineering,
25,
439,
2018.
-
[139]
高明 , 何锁盈 and 孙奉仲.
Thermal performance analysis for high level water collecting wet cooling tower under crosswind condi.
Applied Thermal Engineering,
29,
568,
2018.
-
[140]
何锁盈 , 高明 and 孙奉仲.
Experimental study on the air-side flow resistance of different water collecting devices for wet coo.
Journal of Wind Engineering and Industrial Aerodynamics,
53,
2019.