Gas oil at 210 °C is to be cooled to 30 °C and its flow-rate is 20,000 kg/h. The temperature available of cooling water is 25 °C to 55 °C. The pressure drop allowance for each stream is 100 kN/m?. Design Tube-side and Shell-side coefficient Physical properties Water Gas oil T, °C 40 120 Cp, kJ kg1 °C-1 k, kWml °C-1 4.18 2.28 631 x 10-6 0.125 u, mNm-2s 671 x 10-3 0.17 002 o

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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Gas oil at 210 °C is to be cooled to 30 °C and its flow-rate is 20,000 kg/h. The temperature
available of cooling water is 25 °C to 55 °C. The pressure drop allowance for each stream is
100 kN/m?.
Design Tube-side and Shell-side coefficient
Physical properties
Water
Gas oil
T, °C
40
120
Ср, kJ kg1 oC-1
4.18
2.28
k, kWml °C-1
631 x 10-6
0.125
µ, mNm-2s
671 x 10-3
0.17
p, kg m3
992.8
850
Transcribed Image Text:Gas oil at 210 °C is to be cooled to 30 °C and its flow-rate is 20,000 kg/h. The temperature available of cooling water is 25 °C to 55 °C. The pressure drop allowance for each stream is 100 kN/m?. Design Tube-side and Shell-side coefficient Physical properties Water Gas oil T, °C 40 120 Ср, kJ kg1 oC-1 4.18 2.28 k, kWml °C-1 631 x 10-6 0.125 µ, mNm-2s 671 x 10-3 0.17 p, kg m3 992.8 850
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