Cameron Through Conduit Gate Valve CatalogueFull description
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THIS IS MY CV HI, MY NAME IS MIRCO BIANCHINI A SHORT PRESENTATION I’m a passionate architect from Bologna, I just graduated from the university IUAV of Venice. I'm interested in the invest…Full description
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The valves are frequently used for controlling the flow within different medium. Due to the interaction between the sealing elements of the valve, wear occurs that directly affects the life …Full description
Calculated Flow Coefficient, Cv For Full Opening Type 28 and 30 Cameron Ball Valves in Full Open position ( θ =0) Valve Size 2 3 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 40 42 48 56
2500 lb. ANSI Flange We l d e d 328 328 820 820 1500 1500 3580 3580 7140 8560 11480 14140 17500 21800 -
The flow coefficient is defined as the quantity of water in gallons per minute that a flow restriction will pass when the pressure drop through the restriction is 1 psi. Values for Cv for fully opened valves were extrapolated from test results for representative sizes of ball valves valves This data is for general information only. Design changes do become nesessary from time to time and these could result in variations of the existing data. We therefore recommend that you check with your local Cooper Cameron Valves sales office for any details which are critical to your operations.
SD-011049-08-02 Rev A01
Page 1 o f 6
Calculated Flow Coefficient, Cv For Reduced Opening Type 28 and 30 Cameron Ball Valves in Full Open position ( θ =0) Valve Size 3x2 4x3 6x4 8x6 10x8 12x10 14x12 16x14 18x16 20x18 22x20 24x22 26x24 28x26 30x28 32x30 34x32 36x34 40x36 42x40 48x42 56x48
The flow coefficient is defined as the quantity of water in gallons per minute that a flow restriction will pass when the pressure drop through the restriction is 1 psi. Values for Cv for fully opened valves were extrapolated from test results for representative sizes of ball valves This data is for general information only. Design changes do become nesessary from time to time and these could result in variations of the existing data. We therefore recommend that you check with your local Cooper Cameron Valves sales office for any details which are critical to your operations.
SD-011049-08-02 Rev A01
Page 2 of 6
Calculated Flow Coefficient, Cv For Venturi Opening Type 28 and 30 Cameron Ball Valves in Full Open position ( θ =0)
The flow coefficient is defined as the quantity of water in gallons per minute that a flow restriction will pass when the pressure drop through the restriction is 1 psi. Values for Cv for fully opened valves were extrapolated from test results for representative sizes of ball valves This data is for general information only. Design changes do become nesessary from time to time and these could result in variations of the existing data. We therefore recommend that you check with your local Cooper Cameron Valves sales office for any details which are critical to your operations.
SD-011049-08-02 Rev A01
Page 3 of 6
Flow Coefficient, Cv, versus Closure Angle, θ , for Full Opening Cameron Ball Valves
θ°
- Valve Position, Degrees of Ball Rotation (0° = full open) Note : Data presented in these curves substantiated by actual tests of Cameron Ball Valves
SD-011049-08-02 Rev A01
Page 4 of 6
Flow Coefficient, Cv, versus Closure Angle, θ , for Reduced Opening Cameron Ball Valves
θ°
- Valve Position, Degrees of Ball Rotation (0° = full open)
Note : Data presented in these curves substantiated by actual tests of Cameron Ball Valv es
SD-011049-08-02 Rev A01
Page 5 of 6
Flow Coefficient, Cv, versus Closure Angle, θ , for Ventury Opening Cameron Ball Valves
θ°
- Valve Position, Degrees of Ball Rotation (0° = full open)
Note : Data presented in these curves substantiated by actual tests of Cameron Ball Valv es