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李 明佳
机械与车辆学院
h-index
7834
引用
52
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2013
2024
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(203)
相似学者
(2)
指纹图谱
深入其中 Mingjia Li 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Engineering
Computational Fluid Dynamics
25%
Computer Simulation
52%
Concentrated Solar Power
40%
Couplings
100%
Energy Conservation
88%
Energy Efficiency
78%
Energy Engineering
81%
Energy Storage
33%
Finite Volume Method
23%
Fired Power Plant
53%
Fluid Flow
23%
Fouling
31%
Fuel Cell
31%
Heat Exchanger
22%
Heat Flux
31%
Heat Source
40%
Heat Storage
42%
Heat Transfer Fluid
35%
Latent Heat Storage
23%
Latent Heat Thermal Energy Storage
39%
Lattice-Boltzmann Method
50%
Metal Foam
31%
Microalgae
42%
Microgrid
31%
Nanomaterial
33%
Nanostructure
23%
Numerical Model
25%
Numerical Study
23%
Organic Rankine Cycle
41%
Packed Bed
31%
Packed-Bed Thermal Energy Storage
27%
Parabolic Trough
30%
Performance Analysis
31%
Phase Change Material
88%
Photovoltaics
26%
Porous Insert
31%
Power Generation
34%
Renewable Energy
28%
Solar Power Tower
63%
Solar Radiation
27%
Solar Receiver
36%
Storage System
24%
Systems Performance
28%
Thermal Conductivity
24%
Thermal Energy Storage
91%
Thermal Energy Storage System
47%
Thermal Performance
73%
Thermoelectrics
23%
Transients
39%
Vanadium Redox Flow Battery
31%
Chemical Engineering
Adsorption
21%
Alkaline Fuel Cell
11%
Backpropagation
31%
Brayton Cycle
85%
Carbon Dioxide
70%
Carbon Nanotube
15%
Carbon Neutrality
31%
Chemical Reactor
15%
Chitosan
10%
Diffusion
15%
Dissolved Oxygen
36%
Enthalpy
62%
Exergy
29%
Fluid Flow
37%
Fouling
74%
Fuel Cell
50%
Heat Conduction
31%
Heat Convection
26%
Heat Flux
94%
Heat Transfer Coefficient
39%
Latent Heat
78%
Mass Transfer
27%
Metal Foam
31%
Methanol
20%
Microbial Fuel Cell
31%
Monte Carlo Ray Tracing
26%
Nanomaterials
21%
Nanoparticle
41%
Nanostructure
21%
Nanotube
10%
Natural Convection
24%
Neural Network
63%
Nonuniform Flow
10%
Nusselt Number
27%
Phase Separation
10%
Photovoltaic Thermal System
10%
Polytetrafluoroethylene
13%
Positive Temperature Coefficient
10%
Prandtl Number
10%
Precious Metal
21%
Pyrolysis
16%
Rankine Cycle
64%
Sorption
10%
Specific Heat
33%
Supercritical Water Oxidation
15%
Temperature Distribution
53%
Thermal Conductivity
79%
Thermal Gradient
13%
Thiophene
10%
Titanium Dioxide
10%