Extended Surfaces Flashcards

1
Q

How do you solve the turbine blade extended Surface?

A
  1. Apply relevant formula depending on tip condition from extended surfaces section
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2
Q

What are the area and perimeter in the extended surface equations?

A

Cross section area and cross section perimeter of fin

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3
Q

How do you solve rod system with body conduction and convection?

A
  1. Do energy balance: q in = q convec + q cond
  2. Find q conduction using table value of temp. distribution from extended surface and combining it with Fourier law of heat conduction
  3. You will find that dT = d(theta/theta b) * theta_b
  4. Solve at x = L to find total convection out
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4
Q

When do we use the different tip conditions?

A

Infinitely long fin when tip temperature = t infinity

Prescribed temperature when temperature at L is known

Adiabatic when tip is adiabatic ie. no heat loss at tip

Convection when you have convection heat transfer at fin tip

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5
Q

How can you use the corrected length approach and when is it used for fins?

A

Used when the fin tip is not adiabatic, but we still want to use adiabatic tip condition

We use a corrected length L_corr = L_actual + (A_c)/P

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6
Q
A
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