Title: Real Life Heat Transfer Problems : Conjugate Heat Transfer
1Real Life Heat Transfer Problems Conjugate Heat
Transfer
- P M V Subbarao
- Professor
- Mechanical Engineering Department
- IIT Delhi
Togetherness is More Powerful .
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3Solar Power Towers
4Air Craft Window
Tamb,o -400C
Tamb,i 22 0C
5Surface Temperature Distributions
6Conjugate Heat Transfer Model
7Optimal Insulation for Steam Piping
Tsteam
Tpipe,in
Steam
Ambient Air
Tpipe,out
Design Confusion
Tinsulation,in
Tinsulation,out
Tair
8Cooling of Large Electric Motors
9Structure of Stator and Rotor Cores
10Structure of Core Conductor
Conductor coil bundle
Laminated core
11Air flow Convection Heat Transfer in Axial
Radial Ducts
Air gap
12Air flow network
Model of the air flow in the radial air-cooled
induction motor.
13Simplified Air flow Network
Fluid flow network diagram (simplified).
14Air flow in radial ducts and heat flow to air.
15HEAT TRANSFE IN TURNING
- In recent years there has been a growing interest
in modelling of metal cutting process. - It has been accompanied also by the interest in
modelling of thermal behaviour of the workpiece. - Thermal expansion affects the machining accuracy,
hence the latter interest can be attributed to
the demand for higher accuracy and to the effort
to improve the ability of its prediction.
16Heat Transfer in Turning
17Location of Thermocouples
18Temperature Distribution
19Electrical Circuit Theory of Heat Transfer
- DefineThermal Resistance
- A resistance can be defined as the ratio of a
driving potential to a corresponding transfer
rate.
Analogy Electrical resistance is to conduction
of electricity as thermal resistance is to
conduction of heat. The analog of Q is current,
and the analog of the temperature difference, T1
- T2, is voltage difference. From this
perspective the slab is a pure resistance to heat
transfer and we can define
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21Thermal Resistance for Radiation
22The composite Wall
- The concept of a thermal resistance circuit
allows ready analysis of problems such as a
composite slab (composite planar heat transfer
surface). - In the composite slab, the heat flux is constant
with x. - The resistances are in series and sum to Rth
Rth1 Rth2. - If TL is the temperature at the left, and TR is
the temperature at the right, the heat transfer
rate is given by
23 Wall Surfaces with Convection