(a) Calculate the mass flow rate m at the entrance and exit. (b) Calculate the average velocity v in 2 and the mass velocity G in 1.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Flow of Liquid in a Pipe and Mass Balance. A hydrocarbon liquid enters a
simple flow system shown in Fig. 2.6-1 at an average velocity of 1.282 m/s, where
A₁ = 4.33 x 10³ m² and p₁ = 902 kg/m³. The liquid is heated in the process
and the exit density is 875 kg/m³. The cross-sectional area at point 2 is
5.26 x 10-3 m². The process is steady state.
(a) Calculate the mass flow rate m at the entrance and exit.
(b) Calculate the average velocity v in 2 and the mass velocity Gin 1.
A₁
:45:
process
P₁
A₂
P₂
Transcribed Image Text:Flow of Liquid in a Pipe and Mass Balance. A hydrocarbon liquid enters a simple flow system shown in Fig. 2.6-1 at an average velocity of 1.282 m/s, where A₁ = 4.33 x 10³ m² and p₁ = 902 kg/m³. The liquid is heated in the process and the exit density is 875 kg/m³. The cross-sectional area at point 2 is 5.26 x 10-3 m². The process is steady state. (a) Calculate the mass flow rate m at the entrance and exit. (b) Calculate the average velocity v in 2 and the mass velocity Gin 1. A₁ :45: process P₁ A₂ P₂
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