When selecting a butterfly valve for any application, understanding Cv and Kv values is essential. These flow coefficients determine how much fluid a valve can pass at a given pressure drop, directly impacting system performance, pump sizing, and energy efficiency.
Cv (Flow Coefficient) is the number of US gallons per minute (GPM) of 60°F (15.6°C) water that will flow through a valve with a 1 psi pressure drop. A valve with Cv = 100 will pass 100 GPM of water with a 1 psi pressure drop. The higher the Cv, the greater the flow capacity.
Kv is the number of cubic meters per hour (m³/h) of 15°C water that will flow through a valve with a 1 bar (100 kPa) pressure drop. Cv and Kv are directly convertible.
| Conversion | Formula |
| Cv to Kv | Kv = Cv × 0.865 |
| Kv to Cv | Cv = Kv × 1.156 |
Example: A valve with Cv = 1000 has Kv = 1000 × 0.865 = 865 m³/h/bar.
Compared to gate valves, globe valves, and ball valves of the same size, butterfly valves have higher Cv values (lower pressure drop) when fully open. A butterfly valve's Cv at full opening approaches that of a straight pipe section of equivalent length (2-5 pipe diameters equivalent length).
| Valve Type | Relative Cv (same size) | Pressure Drop (same flow) |
| Butterfly Valve (90° Open) | Highest | Lowest |
| Gate Valve (Full Bore) | High | Low |
| Ball Valve (Full Port) | High | Low |
| Globe Valve | Lowest | Highest (5-10x butterfly) |
Unlike gate or ball valves, butterfly valves are frequently used for throttling service. The Cv value changes significantly with disc position:
Concentric butterfly valves exhibit an approximately equal-percentage flow characteristic. Equal increments of disc rotation produce proportional percentage changes in flow rate, providing stable control across the full operating range.
The following table shows typical Cv values for concentric resilient-seated wafer butterfly valves (Class 150, fully open at 90°). These are reference values — actual Cv varies by manufacturer and specific design.
| Size | DN | Cv | Kv | Flow Range (GPM)* |
| 2" | DN50 | 120 | 104 | 10-50 |
| 3" | DN80 | 350 | 303 | 30-150 |
| 4" | DN100 | 560 | 484 | 70-350 |
| 6" | DN150 | 1,300 | 1,125 | 150-900 |
| 8" | DN200 | 2,400 | 2,076 | 300-1,800 |
| 10" | DN250 | 3,900 | 3,374 | 500-3,000 |
| 12" | DN300 | 5,800 | 5,017 | 800-5,000 |
| 16" | DN400 | 10,000 | 8,650 | 1,500-9,000 |
| 20" | DN500 | 16,500 | 14,273 | 2,500-14,000 |
| 24" | DN600 | 24,000 | 20,760 | 3,500-20,000 |
* Flow range at approximately 2-5 psi pressure drop, water service.
For throttling service, it is essential to understand how Cv changes with disc position:
| Disc Angle | % of Full Cv | Typical Use |
| 90° (Fully Open) | 100% | Normal operation, on-off open |
| 70° | 80-85% | High-flow throttling |
| 60° | 60-70% | Process control, flow regulation |
| 45° | 38-48% | Mid-range throttling |
| 30° | 15-25% | Low flow throttling |
| 10° | 3-5% | Not recommended for extended throttling |
| 0° (Closed) | 0% | Isolation / shut-off |
Important: Avoid Extended Throttling Below 20° Disc Angle
Extended operation between 0° and 20° can cause cavitation, high-velocity seat wear, and vibration. For continuous throttling, maintain disc angle above 20°.
For liquids (water and similar fluids), the basic flow equation is:
Where: Q = Flow rate (GPM), Cv = Flow coefficient, ΔP = Pressure drop (psi), SG = Specific gravity of fluid (water = 1.0)
Example: An 8" butterfly valve with Cv = 2,400 (fully open). The valve is in a water line (SG = 1.0) with 3 psi available pressure drop. What flow rate can it pass?
Q = 2,400 × √(3/1.0) = 2,400 × 1.732 = 4,157 GPM
For gases and steam, the calculation requires compressibility considerations. Consult manufacturer data for gas sizing coefficients.
Cv increases approximately with the square of the valve diameter. Doubling diameter increases flow area by 4x, resulting in Cv increase of 3.5-4x.
Wafer and lug valves have nearly identical Cv. Double flange valves have Cv approximately 5-10% higher due to slightly larger bore.
| Service Type | Recommended Disc Angle | % of Full Cv |
| On-Off Isolation | 85-90° | 95-100% |
| Throttling / Modulating | 30-70° | 15-80% |
| Minimum Flow / Bypass | 20-40° | 8-35% |
Rule of thumb: On-off: select valve where design flow passes at 80-90°. Throttling: select valve where normal flow passes at 40-70°. If valve operates below 20°, it is oversized. If above 85° to meet flow, it is undersized.
| Valve Type | Cv Range (Relative) | Notes |
| Concentric Wafer (Rubber Seat) | Base (100%) | Standard Cv per table above |
| Concentric Lug (Rubber Seat) | 98-100% | Near-identical bore diameter |
| Double Flange (Rubber Seat) | 105-110% | Slightly larger bore |
| Double Eccentric (PTFE Seat) | 90-95% | Seat retainer reduces bore area |
| PTFE Lined (Split Body) | 85-92% | Thick lining reduces bore diameter |
A standard 6" (DN150) concentric resilient-seated wafer butterfly valve has a typical Cv of approximately 1,300 (Kv = 1,125) when fully open at 90°. Always use the manufacturer's published Cv data for final sizing.
A butterfly valve typically has Cv 20-30% higher than a gate valve of the same size when fully open. For example, a 10" butterfly valve (Cv ≈ 3,900) has approximately 25% more flow capacity than a 10" gate valve (Cv ≈ 3,100).
Yes, but additional factors must be considered. The liquid Cv equation does not apply to gases because the fluid compresses across the valve. Use the Cg or Kg method, or apply compressibility corrections. Most manufacturers provide gas-sizing coefficients for this purpose.
For liquids, Cv is essentially constant for a given valve opening. It does not change with pressure. The published Cv value is measured with water at 1 psi pressure drop and can be used for liquid sizing at any pressure within the valve's rated range.
A concentric butterfly valve at 45° open delivers approximately 40-45% of its full-open Cv. For example, an 8" valve with Cv = 2,400 (fully open) has Cv ≈ 960-1,080 at 45° disc angle.
Contact our engineering team with the specific valve size, type, and pressure class. We provide detailed Cv tables for every valve configuration, including Cv at 10° increments of disc opening for throttling applications.