Example 8.5 In a food processing plant, a brine solution is heated from 8°C to 14° double-pipe heat exchanger by water entering at 55°C and leaving at 40°C at the rate of 0.18 H the overall heat transfer coefficient is 800 W/(m²K), determine the area of heat exchanger requir for a parallel flow arrangement, and (b) for a counterflow arrangement. Take c for water = 4.18 kJA
Example 8.5 In a food processing plant, a brine solution is heated from 8°C to 14° double-pipe heat exchanger by water entering at 55°C and leaving at 40°C at the rate of 0.18 H the overall heat transfer coefficient is 800 W/(m²K), determine the area of heat exchanger requir for a parallel flow arrangement, and (b) for a counterflow arrangement. Take c for water = 4.18 kJA
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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![In a food processing plant, a brine solution is heated from 8°C to 14°C in a
double-pipe heat exchanger by water entering at 55°C and leaving at 40°C at the rate of 0.18 kg/s. If
the overall heat transfer coefficient is 800 W/(m²K), determine the area of heat exchanger required (a)
Example 8.5
for a parallel flow arrangement, and (b) for a counterflow arrangement. Take c, for water = 4.18 kJ/(kgK).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbb910af7-9f76-4e4b-96b3-cb4f56437ff5%2F973429ce-adf8-4067-90c3-4fde60f08af5%2Fjeh8nya_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In a food processing plant, a brine solution is heated from 8°C to 14°C in a
double-pipe heat exchanger by water entering at 55°C and leaving at 40°C at the rate of 0.18 kg/s. If
the overall heat transfer coefficient is 800 W/(m²K), determine the area of heat exchanger required (a)
Example 8.5
for a parallel flow arrangement, and (b) for a counterflow arrangement. Take c, for water = 4.18 kJ/(kgK).
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