PV/EBR
Pressure/Vacuum Relief Valve deflagration- and endurance burning-proof
- excellent tightness, resulting in lowest possible product losses and environmental pollution
- due to 10% technology, set pressure is close to opening pressure for optimum pressure maintenance in the system as compared to conventional 40% or 100% technology
- valve opens later and closes earlier than conventional valves
- valve pallet is guided inside the housing to protect against harsh weather conditions
- can be used as a protective system in areas with potentially explosive atmospheres in accordance with ATEX
- high flow capacity due to larger FLAMEFILTER® cross section
- PROTEGO®flame arrester unit provides protection against atmospheric deflagrations and endurance burning
- integrated PROTEGO® flame arrester unit saves space and weight and reduces costs
- PROTEGO® flame arrester unit is protected from clogging and sticky substances caused by product vapors
- minimum pressure loss of the PROTEGO® flame arrester unit
- flameproof condensate drain
- maintenance-friendly design
- modular design enables replacement of individual FLAMEFILTER® discs and valve pallet
- available in a special design with lifting device
Función y Descripción
The deflagration-proof and endurance burning-proof PV/EBR type PROTEGO® valve is a highly developed combined pressure/ vacuum relief valve for high flow capacities with an integrated flame arrester. It is primarily used as a device for flame transmission-proof in-breathing and out-breathing on tanks, containers, and process equipment. The valve offers reliable protection against overpressure and vacuum, prevents the in-breathing of air and product losses almost up to the set pressure, and protects against atmospheric deflagration and endurance burning if stabilized burning occurs. The PROTEGO® flame arrester unit is designed to achieve minimum pressure drop with maximum safety. PROTEGO® PV/EBR valves are available for substances from explosion groups IIA to IIB3 (NEC group D to C MESG ≥ 0.65 mm).
The valve functions proportional, so the set pressures should be selected in relation to the proportional behavior (such as a 10%, 40%, or 100% overpressure from the set pressure to the relieving pressure at which the required flow performance is reached).
The tank pressure is maintained up to the set pressure with a tightness that is above the normal standards due to our state-of-the-art manufacturing technology. This feature is ensured by the valve seats made of high quality stainless steel and with individually lapped valve pallets (1), or with an air cushion seal (2), in conjunction with high quality FEP diaphragm. The valve pallets are also available with a PTFE seal to prevent the valve pallets from sticking when sticky substances are used and to enable the use of corrosive fluids. After the overpressure is released, the valve re-seats and provides a tight seal.
If the set pressure is exceeded, explosive gas/product vapor/air mixtures are released into the atmosphere. If this mixture ignites, the integrated PROTEGO® flame arrester unit (3) prevents flame transmission into the tank. If additional mixture continues to flow and stabilized burning occurs, the integrated flame arrester unit prevents flashback as a result of endurance burning. The valve is protected and also fulfils its function under these severe conditions. The spring-loaded weather hood opens as soon as the melting element (4) melts.
The valve can be used at an operating temperature of up to +60°C / 140°F and meets the requirements of European tank design standard EN 14015 (Appendix L) and ISO 28300 (API 2000).
Type-approved in accordance with the current ATEX Directive, as well as other international standards.
Dimensiones
To select the nominal size (DN), please use the flow capacity charts on the following pages
Dimensiones en mm / pulgadas Dimensions for pressure/ vacuum relief valve with heating jacket upon requestSelección de materiales para la vivienda
Design | B | C |
Housing | Steel | Stainless Steel |
Heating jacket (PV / EBR-H-...) | Steel | Stainless Steel |
Valve seat | Stainless Steel | Stainless Steel |
Weather hood | Steel | Stainless Steel |
Combinación de materiales para la unidad apagallamas
Design | A |
FLAMEFILTER® cage | Stainless Steel |
FLAMEFILTER® | Stainless Steel |
Spacer | Stainless Steel |
Selección de materiales para la válvula de presión
Design | A | B | C | D |
Presure range [mbar] [inch W.C.] | +2,0 up to +3,5 +0.8 up to 1.4 | >+3,5 up to +14 >+1.4 up to +5.6 | >+14 up to +210 >+5.6 up to +84 | >+35 up to +210 >+14 up to 84 |
Valve pallet | Aluminium | Stainless Steel | Stainless Steel | Stainless Steel |
Sealing | FEP | FEP | Metal to Metal | PTFE |
Selección de materiales para la válvula de vacío
Design | A | B | C | D |
Vacuum range [mbar] [inch W.C.] | -3.5 up to -5.0 -1.4 up to -2.0 | <-5.0 up to -14 <-2.0 up to -5.6 | <-14 up to -50 <-5.6 up to -20 | <-14 up to -50 <-5.6 up to -20 |
Valve pallet | Aluminium | Stainless Steel | Stainless Steel | Stainless Steel |
Sealing | FEP | FEP | Metal to Metal | PTFE |
Selección del grupo de explosión
MESG | Expl. Gr. (IEC / CEN) | Gas Group (NEC) |
> 0,90 mm | IIA | D |
≥ 0,65 mm | IIB3 | C |
Tipo de bridas de conexión
EN 1092-1; Form B1 |
ASME B16.5 CL 150 R.F. |
Modelo y especificación
Almost any combination of vacuum and pressure levels can be set for the valve. The valve discs are weight loaded. When the difference between the pressure and vacuum exceeds 150 mbar / 60.2 inch W.C., special valve discs are used.
There are two different designs:
Pressure/vacuum relief valve, basic design | PV/EBR- – |
Pressure/vacuum relief valve with heating jacket (max. heating fluid temperature +85°C / 185°F) | PV/EBR- H |
Additional special devices available upon request
Settings
Pressure: | +2.0 mbar | +210 mbar | |
+0.8 inch W.C. | +84 inch W.C. | ||
Vacuum: | -14 mbar | -50 mbar | |
-5.6 inch W.C. | -20 inch W.C. | ||
Vacuum: | -3.5 mbar | -14 mbar | |
-1.4 inch W.C. | -5.6 inch W.C. |
Higher and lower settings upon request
Diagrama de flujo volumétrico
Los diagramas de flujo volumétrico han sido determinados con un banco de pruebas de caudal calibrado y certifi - cado por TÜV. El flujo volumétrico V. en [m³/h] y el CFH se refi eren a las condiciones estándar de referencia de aire según ISO 6358 (20°C, 1bar). La conversión a otras densidades y temperaturas están referidas en el Vol. 1: “Fundamentos Técnicos”.