SLAM-SHUT VALVE. Type OSE. Europe, Middle East, Africa and Asia Pacific Documents Only. Process Management TM

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SLAM-SHUT VALVE Type OSE Process Management TM

DESCRIPTION The purpose of the OSE slam shut valve is to totally and rapidly cut off gas flow when the outlet pressure exceeds or drops below the setting. The OSE is equipped with an OS2 release relay. The OS2 has the same essential characteristics as the previous one, a double-stage mechanism, including: Accuracy, independent of inlet pressure, flow rate and size of the regulator High resistance to shocks and vibrations High sensibility to tripping The following characteristics have been added: Visual indication of the first stage position Relay tightness (IP 68 (IP 66 for explosion proof and connector box)) Stainless steel mechanism Second stage releasing with electrical contact Ergonomical and reset key Electrical contact internally protected by the release relay Relay cap with possibility of leaded sealing Tripping by increasing the maximum pressure (piston detection) Possibility of minimum only tripping Incorporated in the Type OSE DN 25 through 150 is an automatic internal bypasse valve mechanism, which balances pressures on both sides of the plug when resetting. For sizes DN 200 and 250 the bypass is external. APPLICATIONS The OSE slam-shut valve serves to provide overpressure and/or underpressure protection in transmission networks, gas distribution systems and gas supply lines for industrial customers. The slam-shut can be used in networks with inlet pressure levels up to bar. It's set range is from 10 mbar to bar. It exists in sizes DN 25 to 250. BENEFITS Flexibility Interchangeable spring Security Internal bypass (DN 25 to 150) Water Tight Functions in the event of temporary immersion High Precision Two-stage tripping mechanism Large Tripping Range Interchangeable box OPTIONS Electrical Remote Sensing: - Explosion proof version with 3-wire connection - Explosion proof version and connector box - Intrinsical safe tight-shut connector Second Sensing Box (max and/or min)* Manual Push Button Trigger Switch** Remote Control with Solenoid Valve Additional manometric device for extra pressure sensing In the case of high pressure applications, there is a choice between : Detection by bellows (high accuracy, max and/or min) Detection by piston (very high accuracy, max only or min only). CONNECTIONS Inlet/Outlet: ISO PN B2/50 B1/20 B (ANSI 600/300/150 RF) Slam-shut sensing line (IS): Tapped 1/4 NPT Slam-shut vent (E): Tapped 1/4 NPT Sensing line (IS): Minimum interior Ø 8 mm Contact: Type C1 3 m of 3-wire cable Type C2 Explosion proof Type C3 Intrinisical safe * In this type of configuration the first sensing box is set at max. only. ** Instead of a second sensing box. 2

PRINCIPLE OF OPERATION 1 2 3 4 6 5 Type OSE Slam-Shut Valve DN 25 through DN 150 - Principle of Operation When the pressure becomes too high (or too low), the stem of the manometric box (key 4) moves and triggers the release of the detection stage (key 3) which activates the power stage (key 1) causing the slam-shut plug (key 8) to close. 11 7 8 9 10 Push Button Trigger Switch Tight shut-off is ensured by the valve seal ring (key 10) pushing on the seat (key 11). This shut-off progresses due to the dash pot effect between the stem (key 7) and the plug (key 8). A guide made from composite material avoids any risk of the plug jamming. OSE - Version with Push Button Trigger Switch (Option) 3

PRINCIPLE OF OPERATION (cont'd) 14 BMS BM Type OSE Slam-Shut Valve with External Bypass DN 200 and DN 250 - Principle of Operation Rearming remains manual. It consists of two phases: one phase to balance pressure (inlet and outlet) using the automatic integral bypass for DN 25 through DN 150 (key 9) or external bypass for sizes DN 200 and DN 250 (key 14) and a second phase which opens the plug. Changing to different maximum slam-shut settings is effected by adjusting the spring (key 6) of the manometric box (key 5), changing the spring (nine standard sizes), or by changing the manometric box (six sizes). The automatic integral bypass avoids the risk of the plug remaining open, which can occur with an external bypass. It is possible to change the flow direction by simply turning the mechanism box. The bypass valve used for DN 200 and DN 250 should be closed after the pressure balance on inlet and outlet is obtained. Changing to minimum slam shut setting is effected by simply adjusting the hook (key 2) on the stem (key 4) of the manometric box. 4

CHARACTERISTICS Operating Pressure: Pu bar max Set Pressure Range: Wdu-Wdo 0.010 to bar Sizes inlet/outlet : DN 25, 50, 80,, 150, 200 and 250 Temperature Range: - 20 to + 60 C (depending on bolts materail) - 30 to + 71 C Accuracy: AG ± 2,5 % ± 5 % (piston) Response Time: ta < 1 second Flow Cooefficent (Cg) Basis Natural Gas Density: 0.74 kg/m 3 Temperature : 0 C Input Pu : Inlet pressure (bar) dp : Pressure drop (bar) Q : Maximum flow (m 3 /h(n)) Recommended Outlet Pressure Pd 0.011 0.027 Size (1) Example Pu : 50 bar dp : 0.2 bar Q : 00 (m 3 /h(n)) Result Cg : 3300 DN : 80 BMS SPRING MAX ONLY PMS Box (bar) Set Pressure Ranges Wire Diameter (mm) Max. low pt possible Wdso Ranges (bar) Recommended Range (2) Max. low pt Flow Coefficient ( P max) DN Cg C1 Valve open 25 505 35 > 25 50 2110 35 > 25 80 4670 35 25 7860 32 10 150 14850 33 6 200 28830 34.6 8.2 250 42180 35.5 4.6 Internal Bypass (DN 25 to 150) 25 35 External Bypass (DN 200 to 250) 133 32.8 Max. high pt MIN INTERVAL Set Point Pd (3) (bar) 2.0 0.010 0.015 0.035 0.004 P max (bar) 0.027 0.062 2.5 0.025 0.040 0.080 0.005 0.062 0.108 3.0 0.045 0.080 0.140 0.010 0.108 0.185 3.5 0.070 0.070 0.240 0.014 162 5 0.185 0.292 4.0 0.115 0.140 0.380 0.018 0.292 0.577 5.0 0.140 0.300 0.750 0.050 0.577 1.083 5.5 0.250 0.600 1.3 0.080 1.083 1.917 6.5 0.450 1.2 2.3 0.170 1.917 4.250 4.5 1.0 2.0 5.1 0.350 4.250 9.167 071 16 5.5 2.1 4.0 11.0 0.700 9.167 13.333 6.5 4.0 8.0 16.0 1.6 13.333 18.333 5.5 16.0 16.0 22.0 3.0 027 18.333 33.333 6.5 22.0 22.0 40.0 6.5 33.333 45.833 5.5 40.0 40.0 55.0 7.0 017 45.833 83.333 6.5 55.0 55.0.0 12.0 13.333 18.333 5.5 5.5 11.0 22.0 1.0 236 35 18.333 29.167 6.5 8.3 16.0 35.0 2.5 29.167 60.000 315 72 5.0 17.5 35.0 72.0 5.0 Valve closed C61 This table is based on a setpoint equal to 1.3 Pd for a Pd up to 1 bar, and 1.2 Pd for a Pd from 1 bar. (1) Boxes 162 and 071 are equipped with a diaphragm, 027 and 017 are equipped with a piston, and 236 and 315 are equipped with bellows. (2) The recommended set point range permits a guarantee of the accuracy (AG). (3) Respecting the minimum interval between the Wdso setting and the Pd permits a guarantee of resistance to shocks. For max and min, or min only, contact FRANCEL. C63 5

MATERIALS SIZING Valve Assembly Body Connecting Part Plug Seat Bypass Spring O-rings Stem Packing Gland Type OS2 Release Relay Mechanism Box Box Cover Mechanism Flat rings Truarc rings Manometric Box Spring Case Spring Box Diaphragm Piston Bellows Spring Adjustment screw INSTALLATION A 352 LCC Steel A 350 LF2 Zinc Plated Steel Zinc Plated Steel Nitrile Bronze Chromium Plated Aluminium Chromium Plated Aluminium / Brass Propyene Nitrile Chromium Plated Aluminium Nitrile mesh Zinc Plated Steel Zinc Plated Steel E IS 0 Pe 10 1 00 Q= Q=00 dp=0,1 0,5 000 1 Q 5 DN25 DN50 DN80 DN DN150 0 00 Cg Pu Pd C65 Install the slam-shut valve on horizontal pipeline. The safety manometric box impulse should be connected before the outlet valve on the on the straight run of pipeline. If the remote alert option is applicable it must be electrically connected 6

DIMENSIONS & WEIGHTS D 25 D 25 C B DN 25 50 80 150 200 250 C B A E A F E C66 Type OSE DN 25 through DN 150 Type OSE DN 200 and DN 250 DIMENSIONS ANSI A B C Max D E F WEIGHTS (kg) 150 185 54 116 14.0 300 197 334 16.0 62 124 600 210 17.0 150 254 76 152 26.0 300 267 346 29.0 83 165 600 287 32.0 150 298 95 190 43.0 300 318 380 48.0 105 210 600 337 55.0 150 353 114 229 74.0 300 368 127 420 220 154 82.0 600 394 137 273 98.0 150 451 140 150.0 300 473 159 424 357 166.0 600 508 178 202.0 150 543 171.5 294 300 568 190.5 579 446 336 321 600 610 209.5 356 150 673 203 469 300 708 222 667 498 363 504 600 752 254 577 C67 7

Industrial Regulators Emerson Process Management Regulator Technologies, Inc. USA - Headquarters McKinney, Texas 75069-1872, USA Tel: +1 800 558 5853 Outside U.S. +1 972 548 3574 Asia-Pacific Shanghai 201206, China Tel: +86 21 2892 9000 Europe Bologna 40013, Italy Tel: +39 051 419 0611 Middle East and Africa Dubai, United Arab Emirates Tel: +971 4811 8 Natural Gas Technologies Emerson Process Management Regulator Technologies, Inc. USA - Headquarters McKinney, Texas 75069-1872, USA Tel: +1 800 558 5853 Outside U.S. +1 972 548 3574 Asia-Pacific Singapore 128461, Singapore Tel: +65 6777 8337 Europe O.M.T. Tartarini s.r.l. Via P. Fabbri 1, I-40013 Castel Maggiore (Bologna), Italy Tel: +39 051 419 0611 Francel SAS, 3 ave Victor Hugo, CS 80125 Chartres 28008, France Tel: +33 2 37 33 47 00 TESCOM Emerson Process Management Tescom Corporation USA - Headquarters Elk River, Minnesota 55330-2445, USA Tels: +1 763 241 3238 +1 800 447 1250 Asia-Pacific Shangai 201206, China Tel: +86 21 2892 9499 Europe Selmsdorf 23923, Germany Tel: +49 38823 31 287 For further information visit www.francel.com The Emerson logo is a trademark and service mark of Emerson Electric Co. All other marks are the property of their prospective owners. Francel is a mark owned by Francel SAS, a business of Emerson Process Management. The contents of this publication are presented for informational purposes only, and while every effort has been made to ensure their accuracy, they are not to be construed as warranties or guarantees, express or implied, regarding the products or services described herein or their use or applicability. We reserve the right to modify or improve the designs or specifications of such products at any time without notice. Emerson Process Management does not assume responsibility for the selection, use or maintenance of any product. Responsibility for proper selection, use and maintenance of any Emerson Process Management product remains solely with the purchaser. NCAOSE0310EN-OSE-BUL-01/2013 Francel, 2010, 2013; All rights reserved