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Min Pan
Dr
Reader
,
Department of Mechanical Engineering
Institute for Mathematical Innovation (IMI)
Centre for Digital, Manufacturing & Design (dMaDe)
EPSRC Centre for Doctoral Training in Advanced Automotive Propulsion Systems (AAPS CDT)
Institute for Advanced Automotive Propulsion Systems (IAAPS)
https://orcid.org/0000-0002-2901-3388
Phone
+44 (0) 1225 383023
Email
M.Pan
bath.ac
uk
4 EAST 2.51
Accepting Doctoral Students
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Projects
(14)
Research output
(71)
Thesis
(1)
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(6)
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Dive into the research topics where Min Pan is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Engineering & Materials Science
Hydraulics
100%
Actuators
37%
Reciprocating pumps
36%
Pumps
30%
Cylinder blocks
23%
Robots
21%
Pistons
21%
Fluid Power
19%
Flow rate
17%
Analytical models
17%
Fluids
15%
Wave propagation
14%
Pipelines
13%
Hose
12%
Sensors
12%
Pressure control
11%
Transducers
10%
Unsteady flow
9%
Orifices
9%
Energy efficiency
9%
Integrated control
9%
Flow control
9%
Robotics
8%
Controllers
8%
Solenoids
8%
Microporosity
8%
Reels
8%
Switching systems
8%
Cavitation corrosion
8%
Polymers
8%
Nanogenerators
8%
Aircraft
8%
Soaps (detergents)
8%
Pneumatic actuators
7%
Hydraulic models
7%
Selective laser melting
7%
Engineering research
7%
Sorption
6%
Aerospace applications
6%
Switching frequency
6%
Motion analysis
6%
Energy harvesting
6%
Units of measurement
6%
Experiments
6%
Muscle
6%
Harvesters
6%
Notch filters
6%
Laminar flow
6%
Seats
6%
Global optimization
6%
Physics & Astronomy
hydraulics
28%
hydraulic equipment
20%
actuators
19%
converters
17%
robots
16%
hoses
12%
fluids
10%
high speed
9%
pistons
9%
pumps
9%
robotics
8%
active control
8%
adaptive control
7%
heart rate
7%
soaps
7%
noise reduction
7%
impact velocity
6%
healing
6%
hydrostatics
6%
carbon fibers
6%
muscles
6%
curtains
6%
erosion
5%
cavitation flow
5%
attenuators
5%
fluid power
5%
Chemical Compounds
Piston
20%
Hydraulic System
19%
Pump
18%
Cylinder
13%
Pressure
10%
Application
10%
Robotics
9%
Hose
9%
Solenoid
8%
Flow
7%
Cavitation
7%
Jet
6%
Mechanical Stress
6%
Wear
6%
Energy
5%
Composite Material
5%
Flow Kinetics
5%
Carbon Fiber
5%