The loss coefficients for the pipe shown is: up to A it is 0.6, from A to B it is 1 from B to C it is 0.6, from C to D it is 2. Estimate the flow rate and the pressures at A, B, C, and D. The elevations are shown. l. 12 al. 10 S cm dia Watr al 3 3c dia Solution: 1. The energy equation can be simplified to O z1 - 22 = m; P1 P2 %3D m; Vexit m; 2g 2g o The total energy loss occurred through this system is calculated as: h= 2g o Relationship between vpipe and vexit is: Vexit = U pi pe i 2. Thus, velocity in the pipe is v pipe m/s; %3D 3. Calculate the flow rate Q= m3/s; 4. Pressure at A, pa= kPa; (energy equation from surface to A) 5. Pressure at A, pa=| kPa; (energy equation from surface to B) 6. Rroccuro at D kDa (eneray eguuation from surface to C)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
icon
Related questions
Question
I need all parts handwritten or I'll dislike listen again all parts handwritten
The loss coefficients for the pipe shown is: up to A it is 0.6, from A to B it is 1 from B to C it is 0.6, from C to D it is 2.
Estimate the flow rate and the pressures at A, B, C, and D. The elevations are shown.
el. 12 m
al. 10m
Sca dia
Water
al 3=
Solution:
1. The energy equation can be simplified to
o z1 - Z2 =
m;
P1
P2
m;
Vexit
m;
2g
2g
2g
Upipe
o The total energy loss occurred through this system is calculated as: h=
2g
o Relationship between vpipe and vexit is: Vexit =
U pi pe i
2. Thus, velocity in the pipe is v pipe =
m/s;
3. Calculate the flow rate Q=
m3/s;
4. Pressure at A, Pa=
kPa; (energy equation from surface to A)
5. Pressure at A, Pa=
kPa; (energy equation from surface to B)
6. Pressure at D, pp=
kPa.(energy equation from surface to C)
7. Pressure at A, pA=
kPa; (energy equation from surface to D)
Transcribed Image Text:The loss coefficients for the pipe shown is: up to A it is 0.6, from A to B it is 1 from B to C it is 0.6, from C to D it is 2. Estimate the flow rate and the pressures at A, B, C, and D. The elevations are shown. el. 12 m al. 10m Sca dia Water al 3= Solution: 1. The energy equation can be simplified to o z1 - Z2 = m; P1 P2 m; Vexit m; 2g 2g 2g Upipe o The total energy loss occurred through this system is calculated as: h= 2g o Relationship between vpipe and vexit is: Vexit = U pi pe i 2. Thus, velocity in the pipe is v pipe = m/s; 3. Calculate the flow rate Q= m3/s; 4. Pressure at A, Pa= kPa; (energy equation from surface to A) 5. Pressure at A, Pa= kPa; (energy equation from surface to B) 6. Pressure at D, pp= kPa.(energy equation from surface to C) 7. Pressure at A, pA= kPa; (energy equation from surface to D)
el. 12 m
el. 10 m
C
B
8 cm dia.
Water
el. 3 m
A
3 cm dia.
el. 0
D
Transcribed Image Text:el. 12 m el. 10 m C B 8 cm dia. Water el. 3 m A 3 cm dia. el. 0 D
Expert Solution
steps

Step by step

Solved in 4 steps with 4 images

Blurred answer
Knowledge Booster
Engineering Drawing
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Elements Of Electromagnetics
Elements Of Electromagnetics
Mechanical Engineering
ISBN:
9780190698614
Author:
Sadiku, Matthew N. O.
Publisher:
Oxford University Press
Mechanics of Materials (10th Edition)
Mechanics of Materials (10th Edition)
Mechanical Engineering
ISBN:
9780134319650
Author:
Russell C. Hibbeler
Publisher:
PEARSON
Thermodynamics: An Engineering Approach
Thermodynamics: An Engineering Approach
Mechanical Engineering
ISBN:
9781259822674
Author:
Yunus A. Cengel Dr., Michael A. Boles
Publisher:
McGraw-Hill Education
Control Systems Engineering
Control Systems Engineering
Mechanical Engineering
ISBN:
9781118170519
Author:
Norman S. Nise
Publisher:
WILEY
Mechanics of Materials (MindTap Course List)
Mechanics of Materials (MindTap Course List)
Mechanical Engineering
ISBN:
9781337093347
Author:
Barry J. Goodno, James M. Gere
Publisher:
Cengage Learning
Engineering Mechanics: Statics
Engineering Mechanics: Statics
Mechanical Engineering
ISBN:
9781118807330
Author:
James L. Meriam, L. G. Kraige, J. N. Bolton
Publisher:
WILEY