Nak (56%/44%), which is an alloy of sodium and potassium, is used to cool fast neutron nuclear reactors. The NaK flows at a rate of mm 0.8 kg/s through a D = 40-mm-diameter tube that has a surface temperature of T = 435 K. The NaK enters the tube at Tmi 335 K and exits at an outlet temperature of Tm. = 397 K. Determine the tube length L, in m, and the local convective heat flux at the tube exit, in W/m². L= q" i i m W/m²

Elements Of Electromagnetics
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=
Nak (56%/44%), which is an alloy of sodium and potassium, is used to cool fast neutron nuclear reactors. The NaK flows at a rate of
m = 0.8 kg/s through a D 40-mm-diameter tube that has a surface temperature of T = 435 K. The NaK enters the tube at
Tmi
= 335 K and exits at an outlet temperature of Tm,o 397 K. Determine the tube length L, in m, and the local convective heat
flux at the tube exit, in W/m².
L =
q"
=
m
W/m²
Transcribed Image Text:= Nak (56%/44%), which is an alloy of sodium and potassium, is used to cool fast neutron nuclear reactors. The NaK flows at a rate of m = 0.8 kg/s through a D 40-mm-diameter tube that has a surface temperature of T = 435 K. The NaK enters the tube at Tmi = 335 K and exits at an outlet temperature of Tm,o 397 K. Determine the tube length L, in m, and the local convective heat flux at the tube exit, in W/m². L = q" = m W/m²
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