Flow Measurement SITRANS F VA. SITRANS FVA250 variable area meter. 4/382 Siemens FI Overview
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- Daisy Janis Woods
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1 Overview Design and mode of operation Like the other units in the range, the SITRANS FVA250 operates according to the variablearea flow tube principle: the flowing medium lifts the conical float in the flow tube. The annular gap is then increased until there is an equilibrium between the buoyant force of the medium and the force due to the weight of the float. The height of the float is directly proportional to the flow quantity. The movement of the float is transmitted by a magnet to a slave magnet in the display unit outside the flow tube. Application The s with a standard length of 250 mm (9.8 inch) and their completely metal design can be used to measure many different types of liquids and gases passing through closed piping. The robust design means that they can also be used in harsh conditions. Different types of flanges, liners and float materials satisfy the requirements of the pharmaceutical and chemical industries. The measured value is displayed directly on the scale, and output via a switch contact or as a current output (HART or PROFIBUS PA). The SITRANS FVA250 is primarily used in the following industries: Chemical industry Water Power generation and distribution Special features Standard design available at short notice Robust allmetal fitting with impactresistant housing cover Can also be used for corrosive and flammable media Use possible at high pressures and temperatures Product and percentage scales Can be optionally fitted with heating and cooling sheaths Contaminationinsensitive guiding of float Flow tube/tube angle Float damping A float damping is generally recommended for gas measurements. if air pockets cannot be completely prevented in the medium. if the pipelines are subject to knocking caused by delays in the flow rate, e.g. due to fast throttling or when the pipe is shut off. if turbulence, pulsations or other instabilities cause the float to oscillate. when it is not possible to slowly build up the flow pressure. when it is not possible to prevent vibrations in the pipeline. /382 Siemens FI
2 Technical specifications Application See page /382 Design and mode of operation See page /382 Measuring principle Input Classification according to pressure equipment directive (DGRL 97/23/G) ) Variable area flowmeter Measuring range See table on page /385 Pressure rating Flow Dimensions for mesured variables Rated conditions Mounting Ambient temperature With local display With limit transmitter With HART, PA output Medium conditions PN PN 0 ( psi) depending on version (see table on page /385) upwards l/h, from 000 l/h (17.6 USgpm) in m³/h vertical Messuring accuracy For liquids ± 1.6% For gases ± 2.0% C ( F) C ( F) C ( F) Temperature of medium See page /385 Design Flanges Material Fitting Float Wetted parts materials Degree of protection (display unit) Display unit made of aluminium Display unit made of stainless steel lectromagnetic immunity N : 1999 N N 55011: 1998 A1: 1999 N 10921, ANSI Stainless steel, mat. No. 1.0/316L Stainless steel, mat. No.1.0/316L, Hastelloy, PTF Stainless steel mat. No. 1.0/316L, PTF, C 22.8, Hastelloy depending on version IP65 IP66 NAMUR recommendation N 21 Order No. 7M5822 7M5823 Interference immunity industrial environment mitted interference residential environment Group 1, Class B Permissible media Category DN 15 xaxxxxxxx Gases of fluid group 1 and Article 3.3 DN 20 xfxxxxxxx liquids of fluid group 1 Article 3.3 DN 25 xbxxxxxxx Article 3.3 DN 32 xgxxxxxxx III DN 0 xhxxxxxxx III DN 50 xcxxxxxxx III DN 65 xjxxxxxxx III DN 80 xdxxxxxxx III DN 100 xxxxxxxx III Technical specifications of contacts Limit transmitter Switching principle Connection Function Device setting Limit sensor (inductive contact) The measuring instrument is supplied as ordered ready for operation. Limit sensors are preset to the required values. If you have not stipulated any particular specifications, the basic settings are as follows: 1 contact device: Min. contact switching point at 10 % falling flow rate. (damped/closedcircuit operation) 2 contact devices: Min. contact switching point at 10 % falling flow rate and max. contact switching point at 90 % rising flow rate Adjusting the limit sensors Inductive contact, single contact and twin contact M20x1.5 8 V DC Selfinductance 500 µh Selfcapacitance Ambient temperature When used in nonhazardous locations xplosion protection CType xamination Certificate for Directive 9/9/G lectric remote transmitter, signal output HART Connection Output Load Ambient temperature When used in nonhazardous l ocations xplosion protection CType xamination Certificate for Directive 9/9/G lectric remote transmitter, signal output PROFIBUS PA Basic current Fault current Transfer rate Ambient temperature When used in nonhazardous locations xplosion protection CType xamination Certificate for Directive 9/9/G 80 nf C ( F) II 2G T PTB 99 ATX 2219 X 2 wire connection V DC ma min. 250 Ω C ( F) ATX II 2G DMT 00 ATX V DC < 16.5 ma < 18 ma kbaud C ( F) ATX II 2G DMT 00 ATX 075 The contacts can be adjusted over the contact position indicator located on the scale. For this purpose, you need to remove the indicator hood, loosen the contact position indicator, set it to the required value and tighten again. Siemens FI /383
3 Analog output with magnetoelectrical transmitter The magnetoelectrical transmitter is factorycalibrated to the scale intervals. For HART, the signal output is solely available with 2wire connection with to 20 ma. The signal output and the limit value can be configured over a HART modem using the configuration program SIMATIC PDM. The PROFIBUS PA is fitted with an interface for a digital communication circuit in accordance with the FISCO model. The signal output is configured using SIMATIC PDM. Hazardous area Inductive contact SJ3.5N Contacts according to N (NAMUR) Safe area Isolation amplifier Limit value Limit value Hazardous area Supply current circuit Li = 20 µh Ui = 30 V Ci = 16 nf li = 150 ma Ta = 70 C Pi = 1000 mw Angular sensor type MM α Min Contacts according to N (NAMUR) 1 2 Binary outputs Li = µh Ci = 16 nf Ta = 70 C Safe area Transmitter power supply 20 ma 20 ma Ui = 30 V li = 20 ma Pi = 100 mw Isolation amplifier Pulse output Min./Max. limit value Connection diagram for inductive limit transmitter Schematics Connection diagram for HART transmitters with to 20 ma output, pulse output and limit contact Hazardous area Angular sensor type MM α ma Safe area Transmitter power supply Output 20 ma Rmin 250 Ω Hazardous area Supply current circuit Li = 20 µh Ui = 30 V Ci = 16 nf li = 150 ma Ta = 70 C Pi = 1000 mw Safe area Supply current circuit Li = 20 µh Ui = 30 V Ci = 16 nf li = 150 ma Ta = 70 C Pi = 1000 mw Auxiliary power supply HART modem Connection diagram for HART magnetoelectrical transmitters Angular sensor type MM α Max Min Contacts according to N (NAMUR) 1 2 Binary outputs Li = µh Ci = 16 nf Ta = 70 C Transmitter power supply 20 ma 20 ma Ui = 30 V li = 20 ma Pi = 100 mw Isolation amplifier Max. limit value Min. limit value Connection diagram for HART transmitters with to 20 ma output, and 2 limit contacts /38 Siemens FI
4 Measuring ranges for liquids/gases Possible flange connections to N gray = Type CFS and Type FH X = Type FFP Design CFS FH FFP 1) Wetted parts materials Mat. No. 1.0/316L Hastelloy C PTF Fitting Mat. No. 1.0/316L Mat. No /316Ti Mat. No /316Ti with PTF liner Flange Mat. No. 1.0/316L DN 25: Hastelloy > DN 25: Hastelloy/ stainless steel Float/flow tube Mat. No. 1.0/316L Hastelloy PTF Max. temperature of medium 200 C (392 F) optional 350 C (662 F) Nominal pressure DN15... DN 80 (½... 3 inch): PN 0 (580 psi) DN100 ( inch): PN 16 (232 psi) optional up to 00 bar (5800 psi) Measuring ranges 200 C (392 F) optional 350 C (662 F) DN15... DN 80 (½... 3 inch): PN 0 (580 psi) DN100 ( inch): PN 16 (232 psi) optional up to 00 bar (5800 psi) Mat. No /316Ti with PTF liner 125 C (257 F) PN 16 (232 psi) Liquids in l/h with density: 1,0 kg/l, temperature 20 C (68 F), viscosity: 1 mpa. s Gas in m 3 /h with density: 1,293 kg/m 3, temperature 20 C (68 F), viscosity: 0,0181 mpa. s, p e = 0 bar (0 psi) DN 15 2) DN 20 DN 25 DN 32 DN 0 DN 50 DN 65 DN 80 DN 100 Pressure loss [mbar] in relation to fullscale value Order code in MLFB 1) The measuring range dynamics is always 1:10. For type FFP, the measuring range dynamics 1:5 for small flow rates. 2) Not available in ANSI ½ for type FFP; rated size available: ANSI ¾. Liquid l/h Gas m³/h Liquid l/h Gas m³/h Liquid l/h 0 Z K1A Z K1B A B C X X 0 Z K1C ) 1.5 1) X X 0 D ) 2.1 1) X X ) 3.0 1) X X 60 F X X 60 G X X 70 H X X 80 J X 60 K X 70 L X DN < 0: 100 DN 0: 50 M X DN < 0: 20 DN 0: 80 N X DN < 0: 180 P DN 0: 90 X 110 Q X X DN < 80: 230 R DN 80: 70 X DN < 80: 230 DN 80: 70 S X DN < 80: 500 T DN 80: 100 X DN < 80: 350 U DN 80: 120 X DN < 80: 350 V DN 80: W Z K1D X Gas m³/h Siemens FI /385
5 Dimensional drawings 250 (9.8) 19 (5.86) A 19 (5.86) 97 (3.81) Ø I.W. 165* (6.9*) 90 (3.5) SITRANS FVA250, enclosure of display unit made of aluminum, dimensions in mm (inch),5 (1.75) DN ANSI I. W. A Weight mm inch mm inch kg lbs 15 PN 0 ½ 150 lbs , PN 0 ¾ 150 lbs , PN lbs , PN 0 1¼ 150 lbs , PN0 1½ 150 lbs , PN lbs , PN 16 2½ 150 lbs , PN lbs PN lbs * 100 mm (3.9 inch) with pulledout display unit 250 (9.8) 19 (5.86) A 19 (5.86) S = = B Ø I.W. 165* (6.9*) 90 (3.5) DN B (flange) B (rmeto) S Weight SITRANS FVA250, enclosure of display unit made of aluminum with heating connection, dimensions in mm (inch),5 (1.75) 97 (3.81) mm inch mm inch mm inch kg lbs 15 ½ , ¾ , , , ¼ , , ½ , , , ½ , , , * 100 mm (3.9 inch) with pulledout display unit 250 (9.8) A Ø196 (7.71) 97 (3.81) Ø I.W. 158* (6.22*) 81 (3.18) SITRANS FVA250, enclosure of display unit made of stainless steel, dimensions in mm (inch) 68 (2.67) DN ANSI I. W. A Weight mm inch mm inch kg lbs 15 PN 0 ½ 150 lbs , PN 0 ¾ 150 lbs , PN lbs , PN 0 1¼ 150 lbs , PN 0 1½ 150 lbs , PN lbs , PN 16 2½ 150 lbs , PN lbs PN lbs * 100 mm (3.9 inch) with pulledout display unit /386 Siemens FI
6 Selection and Ordering data Order No. Order Code, made completely of metal for the measurement of liquids 7M for the measurement of gases 7M Design Type: CFS (standard) Fitting: Stainless steel 1.0/316L, Flange: Stainless steel 1.0/316L float: Stainless steel 1.0/316L Type: FH Fitting: Stainless steel 1.0/316L, Flange: 1.0/316L with Hastelloy liner float: Hastelloy Type: FFP Fitting: Stainless steel 1.0/316L, Flange: 1.0/316L with PTF liner float: PTF Nominal diameter/flange connection Flange to DIN 2501 DN 15, PN 0 DN 20, PN 0 DN 25, PN 0 DN 32, PN 0 DN 0, PN 0 DN 50, PN 0 DN 65, PN 16 J DN 65, PN 0 Z J 1 A DN 80, PN 0 D DN 100, PN 16 DN 100, PN 0 Z J 1 B Flanges to ASM ½ ANSI 150 RF B16.5 (not for DN15 with type FFP) K ½ ANSI 300 RF B16.5 (not for DN15 with type FFP) Z J 2 A ¾ ANSI 150 RF B16.5 L ¾ ANSI 300 RF B16.5 Z J 2 B 1 ANSI 150 RF B16.5 M 1 ANSI 300 RF B16.5 Z J 2 C 1¼ ANSI 150 RF B16.5 N 1¼ ANSI 300 RF B16.5 Z J 2 D 1½ ANSI 150 RF B16.5 P 1½ ANSI 300 RF B16.5 Z J 2 2 ANSI 150 RF B16.5 Q 2 ANSI 300 RF B16.5 Z J 2 F 2½ ANSI 150 RF B16.5 R 2½ ANSI 300 RF B16.5 Z J 2 G 3 ANSI 150 RF B16.5 S 3 ANSI 300 RF B16.5 Z J 2 H ANSI 150 RF B16.5 T ANSI 300 RF B16.5 Z J 2 J 2 5 A F B G H C Siemens FI /387
7 Selection and Ordering data Order No. Order Code, made completely of metal for the measurement of liquids 7M for the measurement of gases 7M Flow tube Measuring range for liquids l/h Measuring range for gases m³/h Nominal diameters FFP FH CFS DN Z K 1 A DN Z K 1 B DN A DN B DN C DN DN DN Z K 1 C DN DN DN D DN DN DN DN DN DN F DN DN DN G DN DN DN H DN DN DN J DN 25 DN DN K DN 25 DN DN L DN 25 DN DN M DN 50 DN DN N DN 50 DN DN P DN 50 DN DN Q DN DN DN R DN DN S DN 80 DN DN T DN 100 DN DN U DN 100 DN DN V DN 100 DN 100 W DN 100 DN 100 Z K 1 D DN 100 DN 100 X Temperature shield/degree of protection Standard up to 150 C for electric output/200 C for local display 0 Standard, with displaced display 2 Stainless steel IP66 for process temperature 150 C 5 Stainless steel IP66 preferred 6 Heating/cooling sheath Without (standard) 0 H/C with flange connection 2 H/C without flange connection 3 Display With local display With local display and an inductive contact, SJ 3.5N (1 NC for downward violation of a limit value) With local display and two inductive contacts, SJ 3.5N With HART protocol, ma, x ia With HART protocol, ma, x ia with two inductive contacts, SJ 3.5N (1 NO contact for downward violation of a limit value, 1 NO contact for upward violation of a limit value) With HART protocol, ma, x ia with one inductive contact, SJ 3.5N and a pulse output (1 NC contact for downward violation of a limit value) lectric transmitter with PROFIBUS PA, x ia Calibration Standard calibration Without calibration certificate 0 With calibration certificate 1 A A C J C L F A G L H J P A /388 Siemens FI
8 Selection and Ordering data Further designs for measurement of liquids and gases Add "Z" to Order No. and specify Order Code. Rating plate in nglish Factory certificate 2.2 Acceptance test B to DIN 50 09, Section 3.1 and N Measured medium specify in plain text (always required) Medium, measuring range, dimension, density, density dimension, viscosity, viscosity dimension, operating temperature, operating pressure Siliconefree version Stainless steel tag plate Specify special version in plain text Order Code Note: For all possible combinations of nominal diameters and flow tubes, see the table on page /385 Selection and Ordering data Further designs for measurement of liquids Add "Z" to Order No. and specify Order Code Order Code Limit stop and damping DN 15 DN 20 DN 25 DN 32 DN 0 DN 50 DN 65 DN 80 DN 100 Type CFS with liquid damping D01 D02 D03 D0 D05 D06 D07 D08 D09 Type FH with liquid damping Type FFP with liquid damping P01 P03 P06 P08 P09 Note: The overall length for the FFP version is 5 mm (0.2 ) longer. B11 C11 C12 Y01 Y0 Y17 Y99 Selection and Ordering data Order Code Further designs for measurement of gases Add "Z" to Order No. and specify Order Code. Limit stop and damping DN 15 DN 20 DN 25 DN 32 DN 0 DN 50 DN 65 DN 80 DN 100 Type CFSwith gas damping D11 D12 D13 D1 D15 D16 D17 D18 D19 Type FHwith gas damping Type FFP with gas damping P11 P13 P16 P18 P19 Note: The overall length for the FFP version is 5 mm (0.2 ) longer. Siemens FI /389
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