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THERMODYNAMICS (CONDUCTION AND CONVECTION)

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FINAL EXAMINATION

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THERMODYNAMICS (CONDUCTION AND CONVECTION)
 

THERMODYNAMICS (CONDUCTION AND CONVECTION)Online version

FINAL EXAMINATION

by Grace Balahay
1

It is the science to predict energy transfer and rate of taking place between bodies as a result of a temperature difference.

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2

the flow of heat is the result of the transfer of internal energy from one molecule to another. Same process takes place with liquid and gases.

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3

in liquids and gases heat may be transported from one point to another by being carried along as internal energy with the flowing medium.

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4

if the motion of the fluid is due entirely to difference in density resulting from difference in temperature or thru expansion.

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5

if the motion of the fluid is produced by mechanical means.

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6

solid, liquid, gases – heats are radiated in the form of electromagnetic wave, and of picking up such radiant energy by absorption. When the waves impinge on a body, part are reflected, part are transmitted, and part are absorbed.

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7

heat flux varies with thermal conductivity of the material and the temperature gradient.

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8

property of a substance of its capacity to transmit an amount of heat through unit thickness, per unit area, time and temperature difference.

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9

quantity of heat which by this temperature difference is caused to flow through the (A) area of the wall/barrier per unit time.

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10

or specific rate of heat flow; is the amount of heat penetrating a unit area of the surface per unit time.

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11

or specific resistance to heat conduction, inverse relation to heat conductivity, a property of insulation materials.

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12

the quotient of thermal conductivity and film thickness.

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13

also the over-all heat transfer coefficient and the over-all conductance

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14

the total thermal resistance, and the total unit resistance to heat flow

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15

streamline flow, viscous flow, heat transfer is more of conduction mode. Re < 2100 for low viscous liquid, gases and vapors.

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16

intermediate flow between laminar and turbulent flow.

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17

swirling or circling flow type, occurring at higher fluid speed, heat transfer is more of convection mode. Re > 2100

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18

for extremely large fluid speed.

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19

when the liquid temperature is below the saturated temperature

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20

when the liquid temp. has attained its saturation temp.

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21

referred to heating surfaces that is submerged below the free surface of the liquid.

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