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Warjito
Faculty of Engineering
,
Department of Mechanical Engineering
h-index
565
Citations
12
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2002
2024
Research activity per year
Overview
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Network
Projects
(13)
Research output
(86)
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(6)
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Dive into the research topics where Warjito is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Access to Electricity
10%
Air Entrainment
34%
Blade number
10%
Breastshot
31%
Bubble Generator
11%
Bubble Surface
12%
Bubble-particle Interaction
15%
Coconut Shell
11%
Computational Fluid Dynamics
11%
Computational Fluid Dynamics Modeling
27%
Computational Methods
14%
Cross-flow
25%
Cross-flow Turbine
46%
Desalination
10%
Downcomer
23%
Entrainment Process
14%
Flotation
26%
Flotation Process
13%
Flow Structure
14%
Generated Power
13%
High-speed Camera
15%
Hydro Turbine
14%
Indonesia
51%
Investment Cost
11%
Low Head
13%
Nozzle
27%
Nozzle Diameter
19%
Numerical Methods
27%
Numerical Simulation
26%
Pico
46%
Pico Hydro
100%
Plunging Water Jet
14%
Remote Areas
34%
Separation Process
10%
Six Degrees of Freedom
33%
Straight Blade
14%
Suction
13%
Turbine Efficiency
12%
Turbine Performance
55%
Turbine Runner
10%
Turbulence Model
20%
Turbulent Model
10%
Turgo Turbine
25%
Undershot Waterwheel
15%
Vertical Plunging Jet
12%
Vortex
13%
Vortex Turbine
13%
Water Energy
10%
Water Vortex
14%
Water Wheel
40%
Engineering
Actual Condition
9%
Aerodynamic Drag
14%
Aerodynamic Drag Reduction
9%
Air Entrainment
34%
Air Temperature
8%
Airfoil
12%
Angular Particle
9%
Archimedes
9%
Blade Turbine
11%
Boundary Condition
15%
Computational Fluid Dynamics
62%
Computational Work
11%
Computer Simulation
28%
Degree of Freedom
41%
Desalination
12%
Downcomer
22%
Dynamic Method
36%
Efficiency Value
9%
Energy Engineering
24%
Experimental Work
11%
Flotation
40%
Flotation Process
15%
Flow Field
13%
Flow Rate
24%
Flow Separation
8%
Flow Structure
14%
Flow Turbine
42%
Hydroelectric Energy
13%
Image Processing
18%
Independent Power
9%
Investment Cost
21%
Manufacturability
9%
Micropump
9%
Numerical Methods
27%
Numerical Study
10%
Optimum Performance
9%
Orifice
7%
Pneumatics
9%
Processing Software
11%
Remote Area
63%
Renewable Energy
17%
Rotational Speed
8%
Spray Dryer
9%
Syringe Pump
8%
Terminal Velocity
8%
Transients
13%
Turbine Efficiency
11%
Turbulent Flow
13%
Video Camera
24%
Vortex
43%