Assume that waters flows through the 30 mm diameter system presented here. The pipe material is stainless steel. Each bend is a 90° elbow short radius. And the triangle at Point C represents a fully opened gate valve. The exit is at Point B. If the volumetric flow rate at exit (Point B) is 0.02 m³/s what is the pressure at Point A? Assume kinematic viscosity of water, v, is 1*10-6 m²/s. 1 m Point A 3 m 1 m 3 m Point C 2 m Equivalent roughness values for new commercial pipes* Material Glass, plastic Concrete Wood stave Rubber, smoothed Copper or brass tubing Cast iron Galvanized iron Wrought iron Stainless steel Commercial steel Point B 1 m Roughness, & 0.003-0.03 0 (smooth) 0.9-9 0.0016 0.5 0.000033 0.01 0.000005 0.0015 0.00085 0.26 0.0005 0.15 0.00015 0.046 0.000007 0.002 0.00015 0.045 mm Equivalent roughness values for new commercial pipes* Material Glass, plastic Concrete Wood stave Rubber, smoothed Copper or brass tubing Cast iron Galvanized iron Wrought iron Stainless steel Commercial steel 0.003-0.03 0.0016 0.000033 Roughness, & 0 (smooth) 0.9-9 0.5 0.01 0.000005 0.0015 0.00085 0.26 0.0005 0.15 0.00015 0.046 0.000007 0.002 0.00015 0.045 Loss coefficients for pipe fittings KL Gate valve-fully opened Globe valve-fully opened 0.19 10 Angle valve-fully opened 5 Ball valve-fully opened Swing check valve Butterfly valve-fully opened 90° elbow (short radius) 90° long sweep elbow 45 bend (short radius) 0.05 2 0.4 +0 0.9 0.6 0.4 90° return bend (short radius) 2 mm
Assume that waters flows through the 30 mm diameter system presented here. The pipe material is stainless steel. Each bend is a 90° elbow short radius. And the triangle at Point C represents a fully opened gate valve. The exit is at Point B. If the volumetric flow rate at exit (Point B) is 0.02 m³/s what is the pressure at Point A? Assume kinematic viscosity of water, v, is 1*10-6 m²/s. 1 m Point A 3 m 1 m 3 m Point C 2 m Equivalent roughness values for new commercial pipes* Material Glass, plastic Concrete Wood stave Rubber, smoothed Copper or brass tubing Cast iron Galvanized iron Wrought iron Stainless steel Commercial steel Point B 1 m Roughness, & 0.003-0.03 0 (smooth) 0.9-9 0.0016 0.5 0.000033 0.01 0.000005 0.0015 0.00085 0.26 0.0005 0.15 0.00015 0.046 0.000007 0.002 0.00015 0.045 mm Equivalent roughness values for new commercial pipes* Material Glass, plastic Concrete Wood stave Rubber, smoothed Copper or brass tubing Cast iron Galvanized iron Wrought iron Stainless steel Commercial steel 0.003-0.03 0.0016 0.000033 Roughness, & 0 (smooth) 0.9-9 0.5 0.01 0.000005 0.0015 0.00085 0.26 0.0005 0.15 0.00015 0.046 0.000007 0.002 0.00015 0.045 Loss coefficients for pipe fittings KL Gate valve-fully opened Globe valve-fully opened 0.19 10 Angle valve-fully opened 5 Ball valve-fully opened Swing check valve Butterfly valve-fully opened 90° elbow (short radius) 90° long sweep elbow 45 bend (short radius) 0.05 2 0.4 +0 0.9 0.6 0.4 90° return bend (short radius) 2 mm
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
Related questions
Question
![Assume that waters flows through the 30 mm diameter system presented here.
The pipe material is stainless steel. Each bend is a 90° elbow short radius. And
the triangle at Point C represents a fully opened gate valve. The exit is at Point B.
If the volumetric flow rate at exit (Point B) is 0.02 m³/s what is the pressure at
Point A? Assume kinematic viscosity of water, v, is 1*10-6 m²/s.
1 m
Point A
3 m
1 m
3 m
Point C
2 m
Equivalent roughness values for new commercial pipes*
Material
Glass, plastic
Concrete
Wood stave
Rubber, smoothed
Copper or brass tubing
Cast iron
Galvanized iron
Wrought iron
Stainless steel
Commercial steel
Point B
1 m
Roughness, &
0.003-0.03
0 (smooth)
0.9-9
0.0016
0.5
0.000033
0.01
0.000005
0.0015
0.00085
0.26
0.0005
0.15
0.00015
0.046
0.000007
0.002
0.00015
0.045
mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0b19c45c-45ce-4c27-bac7-d4347db4e836%2F04cf178e-73b4-49a9-ab31-4aa840805d92%2Flptlgxe_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Assume that waters flows through the 30 mm diameter system presented here.
The pipe material is stainless steel. Each bend is a 90° elbow short radius. And
the triangle at Point C represents a fully opened gate valve. The exit is at Point B.
If the volumetric flow rate at exit (Point B) is 0.02 m³/s what is the pressure at
Point A? Assume kinematic viscosity of water, v, is 1*10-6 m²/s.
1 m
Point A
3 m
1 m
3 m
Point C
2 m
Equivalent roughness values for new commercial pipes*
Material
Glass, plastic
Concrete
Wood stave
Rubber, smoothed
Copper or brass tubing
Cast iron
Galvanized iron
Wrought iron
Stainless steel
Commercial steel
Point B
1 m
Roughness, &
0.003-0.03
0 (smooth)
0.9-9
0.0016
0.5
0.000033
0.01
0.000005
0.0015
0.00085
0.26
0.0005
0.15
0.00015
0.046
0.000007
0.002
0.00015
0.045
mm
![Equivalent roughness values for new commercial pipes*
Material
Glass, plastic
Concrete
Wood stave
Rubber, smoothed
Copper or brass tubing
Cast iron
Galvanized iron
Wrought iron
Stainless steel
Commercial steel
0.003-0.03
0.0016
0.000033
Roughness, &
0 (smooth)
0.9-9
0.5
0.01
0.000005
0.0015
0.00085
0.26
0.0005
0.15
0.00015
0.046
0.000007
0.002
0.00015
0.045
Loss coefficients for pipe fittings
KL
Gate valve-fully opened
Globe valve-fully opened
0.19
10
Angle valve-fully opened
5
Ball valve-fully opened
Swing check valve
Butterfly valve-fully opened
90° elbow (short radius)
90° long sweep elbow
45 bend (short radius)
0.05
2
0.4
+0
0.9
0.6
0.4
90° return bend (short radius)
2
mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0b19c45c-45ce-4c27-bac7-d4347db4e836%2F04cf178e-73b4-49a9-ab31-4aa840805d92%2Fkj786bj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Equivalent roughness values for new commercial pipes*
Material
Glass, plastic
Concrete
Wood stave
Rubber, smoothed
Copper or brass tubing
Cast iron
Galvanized iron
Wrought iron
Stainless steel
Commercial steel
0.003-0.03
0.0016
0.000033
Roughness, &
0 (smooth)
0.9-9
0.5
0.01
0.000005
0.0015
0.00085
0.26
0.0005
0.15
0.00015
0.046
0.000007
0.002
0.00015
0.045
Loss coefficients for pipe fittings
KL
Gate valve-fully opened
Globe valve-fully opened
0.19
10
Angle valve-fully opened
5
Ball valve-fully opened
Swing check valve
Butterfly valve-fully opened
90° elbow (short radius)
90° long sweep elbow
45 bend (short radius)
0.05
2
0.4
+0
0.9
0.6
0.4
90° return bend (short radius)
2
mm
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