A shell and tube heat exchanger has the cross-section shown below. Crude oil (specific gravity, sg = 0.86) at 10°C flows through the shell passage (the 93. shaded area) at a flow rate of 320 liters/min. a) Calculate the Hydraulic Diameter in units of mm. b) Calculate the Reynolds number for the Crude-oil flow. c) Determine the flow regime (laminar, transitional, or turbulent). 45 mm
A shell and tube heat exchanger has the cross-section shown below. Crude oil (specific gravity, sg = 0.86) at 10°C flows through the shell passage (the 93. shaded area) at a flow rate of 320 liters/min. a) Calculate the Hydraulic Diameter in units of mm. b) Calculate the Reynolds number for the Crude-oil flow. c) Determine the flow regime (laminar, transitional, or turbulent). 45 mm
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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![Q3.
shaded area) at a flow rate of 320 liters/min.
JA shell and tube heat exchanger has the cross-section shown below. Crude oil (specific gravity, sg = 0.86) at 10°C flows through the shell passage (the
S Calculate the Hydraulic Diameter in units of mm.
b)
Calculate the Reynolds number for the Crude-oil flow.
c)
Determine the flow regime (laminar, transitional, or turbulent).
45 mm
D = 5.5 mm
Typical of 8
45mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc71388d0-f187-4b8e-840b-91f3c593615b%2F0b8adf80-f82a-4e2c-bafa-9314b5f7d08c%2Fx7x4sd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q3.
shaded area) at a flow rate of 320 liters/min.
JA shell and tube heat exchanger has the cross-section shown below. Crude oil (specific gravity, sg = 0.86) at 10°C flows through the shell passage (the
S Calculate the Hydraulic Diameter in units of mm.
b)
Calculate the Reynolds number for the Crude-oil flow.
c)
Determine the flow regime (laminar, transitional, or turbulent).
45 mm
D = 5.5 mm
Typical of 8
45mm
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