Consider a 2-m-high electric hot-water heater thathas a diameter of 40 cm and maintains the hot water at 55°C.The tank is located in a small room whose average temperatureis 27°C, and the heat transfer coefficients on the innerand outer surfaces of the heater are 50 and 12 W/m2·K,respectively. The tank is placed in another 46-cm-diametersheet metal tank of negligible thickness, and the spacebetween the two tanks is filled with foam insulation (k =0.03 W/m·K). The thermal resistances of the water tank andthe outer thin sheet metal shell are very small and can be neglected. The price of electricity is $0.08/kWh, and the home owner pays $280 a year for water heating. Determine the fraction of the hot-water energy cost of this household that is due to the heat loss from the tank. Hot-water tank insulation kits consisting of 3-cm-thick fiberglass insulation (k = 0.035 W/m·K) large enough to wrap the entire tank are available in the market for about $30. If such an insulation is installed on this water tank by the home owner himself, how long will it take for this additional insulation to pay for itself?

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.
Chapter1: Basic Modes Of Heat Transfer
Section: Chapter Questions
Problem 1.60P: 1.60 Two electric resistance heaters with a 20 cm length and a 2 cm diameter are inserted into a...
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Consider a 2-m-high electric hot-water heater that
has a diameter of 40 cm and maintains the hot water at 55°C.
The tank is located in a small room whose average temperature
is 27°C, and the heat transfer coefficients on the inner
and outer surfaces of the heater are 50 and 12 W/m2·K,
respectively. The tank is placed in another 46-cm-diameter
sheet metal tank of negligible thickness, and the space
between the two tanks is filled with foam insulation (k =
0.03 W/m·K). The thermal resistances of the water tank and
the outer thin sheet metal shell are very small and can be neglected. The price of electricity is
$0.08/kWh, and the home owner pays $280 a year for water
heating. Determine the fraction of the hot-water energy cost of
this household that is due to the heat loss from the tank.
Hot-water tank insulation kits consisting of 3-cm-thick
fiberglass insulation (k = 0.035 W/m·K) large enough to wrap
the entire tank are available in the market for about $30. If
such an insulation is installed on this water tank by the home
owner himself, how long will it take for this additional insulation
to pay for itself?

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