subject
Engineering, 17.06.2020 21:57 sophiaa23

Consider a cylindrical nuclear fuel rod of length and diameter that is encased in a concentric tube. Pressurized water flows through the annular region between the rod and the tube at a rate , and the outer surface of the tube is well insulated. Heat generation occurs within the fuel rod, and the volumetric generation rate is known to vary sinusoidally with distance along the rod. That is, is a constant. A uniform convection coefficient h may be assumed to exist between the surface of the rod and the water (a) Obtain expressions for the local heat flux q'(x) and the total heat transfer q from the fuel rod to the water. (b) Obtain an expression for the variation of the mean temperature Tm(x) of the water with distance along the tube (c) Obtain an expression for the variation of the rod surface temperature Ts(x)with distance along the tube. Develop an expression for the x-location at which this temperature is maximized.

ansver
Answers: 2

Another question on Engineering

question
Engineering, 03.07.2019 23:20
Two technicians are discussing the intake air temperature (iat) sensor. technician a says that the computer uses the iat sensor as a backup to the engine coolant temperature (ect) sensor. technician b says that the powertrain control module (pcm) will subtract the calculated amount of fuel if the air measures hot. who is correct
Answers: 3
question
Engineering, 04.07.2019 18:10
If a particle moves along a path such that r : (3 sin t) m and ? : 2t rad, where t is in seconds. what is the particle's acceleration in m/s in 4 seconds? a)- 16.43 b)- 16.29 c)- 15.21 d)- 13.79
Answers: 1
question
Engineering, 04.07.2019 18:10
Compute the pressure drop of 30°c air flowing with a mean velocity of 8 m/s in a circular sheet-metal duct 300 mm in diameter and 15 m long. use a friction factor, f 0.02, and pair = 1.1644 kg/m a. 37.26 pa b. 25.27 pa n c. 29.34 pa d. 30.52 pa
Answers: 1
question
Engineering, 04.07.2019 18:20
A3-mm-thick panel of aluminum alloy (k 177 w/m-k, c 875 j/kg-k and ? = 2770 kg/m) is finished on both sides with an epoxy coating that must be cured at or above t,-150°c for at least 5 min. the production line for the curing operation involves two steps: (1) heating in a large oven with air at ts,0-175°c and a convection coefficient of h, 40 w/m2. k, and (2) cooling in a large chamber with air at 25°c and a con- vection coefficient of he 10 w/m2.k. the heating portion of the process is conducted over a time interval te which exceeds the ime required to reach 150°c by 5 min (h = r + 300 s). the coating has an emissivity of ? = 0.8, and the temperatures of the oven and chamber walls are 175 and 25°c, respectively. if the panel is placed in the oven at an initial temperature of 25°c and removed from the chamber at a safe-to-touch tempera ture of 37°c, what is the total elapsed time for the two-step curing operation?
Answers: 3
You know the right answer?
Consider a cylindrical nuclear fuel rod of length and diameter that is encased in a concentric tube....
Questions
question
Mathematics, 11.02.2021 18:20
question
History, 11.02.2021 18:20
question
Mathematics, 11.02.2021 18:20
question
Chemistry, 11.02.2021 18:20
question
Mathematics, 11.02.2021 18:20
question
History, 11.02.2021 18:20