104: Hot liquid is flowing at a velocity of 2 m/s through a metallic pipe having an inner diameter of 3.5 cm and length 20 m. The temperature at the inlet of the pipe is 90 °C. Following data is given for liquid at 90°C Density = 950 kg/m³ Specific heat = 4.23 kJ/kg°C Viscosity = 2.55 x 10¹ kg/m.s Thermal conductivity = 0.685 W/m°c The heat transfer coefficient (in kW/m² °C) inside the tube is

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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104: Hot liquid is flowing at a velocity of 2 m/s
through a metallic pipe having an inner diameter of
3.5 cm and length 20 m. The temperature at the
inlet of the pipe is 90 °C.
Following data is given for liquid at 90°C
Density=950 kg/m³
Specific heat = 4.23 kJ/kg°C
Viscosity = 2.55 x 10 kg/m.s
Thermal conductivity = 0.685 W/m°c
The heat transfer coefficient (in kW/m² °C) inside
the tube is
Transcribed Image Text:104: Hot liquid is flowing at a velocity of 2 m/s through a metallic pipe having an inner diameter of 3.5 cm and length 20 m. The temperature at the inlet of the pipe is 90 °C. Following data is given for liquid at 90°C Density=950 kg/m³ Specific heat = 4.23 kJ/kg°C Viscosity = 2.55 x 10 kg/m.s Thermal conductivity = 0.685 W/m°c The heat transfer coefficient (in kW/m² °C) inside the tube is
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