A 3 m internal diameter spherical tank made of 1 cm thick stainless steel (k: 15 W/mK) is used to store water at 4°C, as shown in Figure 2.2. Inner surface of the tank is 4°C, while the outer surface of the tank is painted with black colour paints with emissivity, ɛ = 0.88 measured at temperature 5°C. It is located outdoor at 40°C and is subjected to wind at 25 km/h. Determine the %3D total heat transfer rate to the ice water. T. = 40°C 25 km/h Iced T = 5°C water 1 cm -D; = 3 m T= 4°C Figure 2.2
A 3 m internal diameter spherical tank made of 1 cm thick stainless steel (k: 15 W/mK) is used to store water at 4°C, as shown in Figure 2.2. Inner surface of the tank is 4°C, while the outer surface of the tank is painted with black colour paints with emissivity, ɛ = 0.88 measured at temperature 5°C. It is located outdoor at 40°C and is subjected to wind at 25 km/h. Determine the %3D total heat transfer rate to the ice water. T. = 40°C 25 km/h Iced T = 5°C water 1 cm -D; = 3 m T= 4°C Figure 2.2
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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![A 3 m internal diameter spherical tank made of 1 cm thick stainless steel (k =
15 W/mK) is used to store water at 4°C, as shown in Figure 2.2. Inner surface
of the tank is 4°C, while the outer surface of the tank is painted with black
colour paints with emissivity, ɛ = 0.88 measured at temperature 5°C. It is
located outdoor at 40°C and is subjected to wind at 25 km/h. Determine the
total heat transfer rate to the ice water.
(b)
= 40°C
25 km/h
Iced
Ts 5°C
water
1 ст
-Di = 3 m
T= 4°C
Figure 2.2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F64bc992a-983a-4890-99a5-aa6fa4e7c8cb%2Fe7e8ea14-64d0-4a30-a8e0-925854110498%2F3xixum_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A 3 m internal diameter spherical tank made of 1 cm thick stainless steel (k =
15 W/mK) is used to store water at 4°C, as shown in Figure 2.2. Inner surface
of the tank is 4°C, while the outer surface of the tank is painted with black
colour paints with emissivity, ɛ = 0.88 measured at temperature 5°C. It is
located outdoor at 40°C and is subjected to wind at 25 km/h. Determine the
total heat transfer rate to the ice water.
(b)
= 40°C
25 km/h
Iced
Ts 5°C
water
1 ст
-Di = 3 m
T= 4°C
Figure 2.2
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