A bird is flying in a room with a velocity field of V-› = (u, ? , w) = 0.6x + 0.2t – 1.4 (m/s). The room is heated by a heat pump so that the temperature distribution at steady state is T (x, y, z) = 400 – 0.4y – 0.6z – 0.2 (5 – x)2 (°C). Calculate the temperature change that the bird feels after 10 seconds of flight, as it flies through x = 1 m.
A bird is flying in a room with a velocity field of V-› = (u, ? , w) = 0.6x + 0.2t – 1.4 (m/s). The room is heated by a heat pump so that the temperature distribution at steady state is T (x, y, z) = 400 – 0.4y – 0.6z – 0.2 (5 – x)2 (°C). Calculate the temperature change that the bird feels after 10 seconds of flight, as it flies through x = 1 m.
Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter5: Analysis Of Convection Heat Transfer
Section: Chapter Questions
Problem 5.31P
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A bird is flying in a room with a velocity field of V-› = (u, ? , w) = 0.6x + 0.2t – 1.4 (m/s). The room is heated by a heat pump so that the temperature distribution at steady state is T (x, y, z) = 400 – 0.4y – 0.6z – 0.2 (5 – x)2 (°C). Calculate the temperature change that the bird feels after 10 seconds of flight, as it flies through x = 1 m.
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