Custody Transfer Mass Flow Meter

Fiscal-Billing Coriolis for Tank-Farm Loading, Pipeline Batch Transfer, and Refinery Custody

Accuracy ±0.1 % of rate at custody grade
Pipe DN15 to DN150 standard (DN200 to DN300 by quote)
Dual-pulse output for prover loop integration

  • Direct mass + density + temperature on 4-20 mA (no separate densitometer or thermowell at the meter run)
  • Audit-trail logger preserves the invoice basis for retrieval after the fiscal period
  • Ex d [ia] IIC T6 Gb (flameproof with intrinsically-safe sensor) + IP67 + ISO 9001 calibration certificate with every meter
↓ Request datasheet (PDF)
Custody Transfer Mass Flow Meter; U-tube Coriolis with integrated transmitter and flanged process connection for fiscal-billing service

Fiscal-billing custody Coriolis with ±0.1 % of rate accuracy, dual-pulse output for prover loop, density and temperature output for net-volume correction, and an audit-trail logger for the local metrology regime. Standard build is 316L wetted parts, 4-20 mA + dual-pulse + RS-485 + HART, Ex d [ia] IIC T6 Gb. The custody Coriolis is the standard pick when buyers need ±0.1 % fiscal accuracy for liquid hydrocarbon and refined-product transfer.

Benefits

  • ±0.1 % of rate custody accuracy: tightest grade, factory-calibrated on a gravimetric water rig with traceable rig record.
  • Dual-pulse output for prover loop: two pulse channels with fixed phase relationship for cross-checked prove runs.
  • Density and temperature on the loop: net-volume correction at the flow computer; no separate densitometer or thermowell at the meter run.
  • DN15 to DN150 standard (10 published bore sizes): from loading-arm to mainline pipeline custody; DN200 / DN250 / DN300 large-bore by quote, same custody build across the range.
  • Audit-trail data logger: preserves invoice basis (mass, density, T, totalizer) for retrieval after the fiscal period.
  • Ex d [ia] IIC T6 Gb dual hazardous-area: flameproof body with intrinsically-safe sensor; fits tank-farm Zone 1, refinery Class I Div 1.
  • Lead time 5–7 business days from the factory.

Configure your build.

Select your specs and the configurator returns the build code plus a ballpark unit price. Submit for engineering review and verified sizing within 4 business hours.

Your Configuration

CMFM-CT-50-A1-S-P10-A600-OH-EX
Pipe sizeDN50
Accuracy±0.1 % of rate
Material316L
Pressure10 MPa
FlangeANSI 600 LB
Hazardous areaEx d [ia] IIC T6 Gb
Estimated unit price
Verified after engineer review
$9,180
Subtotal (× 1)$9,180
Request Quote on This Build Email Engineering
✓ Dual-pulse pre-scaled to prover counter at order
✓ Application engineer reviews fiscal regime + service
✓ Reply within 4 business hours

Typical applications

Four fiscal-billing applications where the custody Coriolis is the standard pick.

Tank-farm fiscal loading

Truck and rail loading-rack custody at refined-product terminals. Density + T on the loop for net-volume invoicing at 15 °C or 60 °F reference.

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Pipeline batch transfer custody

Refined-product pipeline batch interface. Density tracks the grade boundary; audit-trail logger settles per-shipper accounting.

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Refinery unit-to-unit settlement

Inter-unit feedstock transfer between licensors or business units. ±0.1 % gives the spec; HART feeds the flow computer.

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Marine bunker + road-tanker billing

Bunker barge delivery and road-tanker retail station drop. Build documentation supports the buyer-arranged metrology submission.

Specifications

Measurement principleCoriolis force on vibrating tube; direct mass flow + density + temperature on one instrument
Pipe size rangeDN15 – DN300 (1/2″ – 12″) across 10 bore sizes
Accuracy class±0.1 % of rate (custody standard) / ±0.15 % / ±0.2 % of rate (factory-calibrated gravimetric water rig)
Repeatability0.05 % at ±0.1 % grade / 0.075 % at ±0.15 % grade / 0.1 % at ±0.2 % grade (per IEC 60534-2-3 convention)
Density measurement0.3 to 3.000 g/cm³, accuracy ±0.002 g/cm³
Temperature measurement−50 to +200 °C standard build, accuracy ±1 °C
Turndown10:1 to 20:1 nominal across the basic accuracy range
Working pressure4.0 / 6.3 / 10 / 16 / 25 MPa (DIN PN40 to PN250 / ANSI 300 LB to 1500 LB)
Flange standardANSI 150 / 300 / 600 / 900 / 1500 LB or DIN PN16 / PN40 / PN63 / PN100 / PN160
Wetted material316L stainless (standard); titanium, Hastelloy C, Monel, tantalum (options)
Housing304 stainless (standard); ZL401 aluminium on the transmitter
CompensationTemperature + Pressure (custody standard) / Temperature only / Pressure only
Output signals4-20 mA dual + Pulse dual (for prover) + RS-485 Modbus RTU + HART
Display3-line LCD with touch keys: instantaneous mass, density, temperature, totalizer
Data loggingAudit-trail logger (mass, density, temperature, totalizer, K-factor); fiscal-period retrieval
Power supply18–36 VDC or 85–265 VAC self-adaptive; 7 W typical, 10 W on AC version
Ambient range−40 to +60 °C standard transmitter; −20 to +60 °C on the LCD high-grade transmitter
Ingress protectionIP67
Hazardous areaEx d [ia] IIC T6 Gb (flameproof body with intrinsically-safe sensor connection)
Applicable mediaLiquid hydrocarbon, refined-product blends, LPG, chemical custody (with appropriate wetted material), pharmaceutical batch
ApprovalsEMC 2014/30/EU (Annex II), ISO 9001 calibration certificate with each meter; fiscal-regime type approval buyer-arranged with notified body
Lead time5 to 7 business days from factory

Installation

Five install rules for the custody Coriolis on fiscal-billing service.

  1. Zero-point check at process temperature after install Run the zero-correction cycle with valves closed both sides, the sensor wetted, and the medium at service temperature. The zero shifts under installation stress and process temperature; running the zero before either is settled leaves a fiscal bias. Repeat zero on a 6-month interval.
  2. Dual-pulse termination at the prover loop counter Terminate the A and B pulse channels at the prover counter on a shielded twisted pair, with the shield grounded only at the counter end. Pre-scale the channel at the factory at order stage to match the prover counter resolution and the service flow range.
  3. Pipe support on both sides of the sensor The vibrating tube is sensitive to external pipe vibration. Add pipe brackets at fixed concrete or steel close to the sensor flanges. On high-vibration runs, isolate with flexible hose upstream and downstream.
  4. No upstream straight-pipe required The Coriolis principle is independent of velocity profile, so no upstream or downstream straight run is required. This is the spec advantage over turbine and vortex custody alternatives.
  5. Earth-ground the sensor housing on a separate line Cross-section ≥ 1 mm² on the sensor ground. Do not bond welding-system ground to the meter ground during pipe work; transient currents shift the zero and damage the pulse pickup.

Frequently asked questions

What is a custody transfer mass flow meter?+
A custody transfer mass flow meter is a fiscal-billing flow meter built to the tightest accuracy class in its measurement family, with the supporting outputs and documentation needed for invoiced product movement between two parties. For liquid hydrocarbon and refined-product transfer this is almost always a Coriolis meter. Coriolis reads mass flow directly through the Coriolis force on a vibrating tube, reads density from the resonant-frequency shift on the same tube, and reads temperature from an embedded RTD. The custody build adds: ±0.1 % of rate accuracy grade, a dual-pulse output for prover loop integration, an audit-trail data logger that preserves the invoice basis for later retrieval, and build documentation traceable to the calibration rig for the buyer-arranged fiscal-regime submission.
Why ±0.1 % Coriolis instead of ±0.5 % turbine for custody?+
On clean low-viscosity refined product (gasoline, diesel, jet fuel) at moderate pressure, a calibrated liquid turbine at ±0.5 % of rate is the lower-cost custody option and is widely accepted on certain fiscal regimes. Coriolis at ±0.1 % becomes the right pick when one or more of the following applies: the medium is mixed crude or refined-product blend (Coriolis reads density inline for net-volume correction; turbine needs a separate densitometer), the service includes batch-to-batch product changes (Coriolis density tracks the grade interface), the accuracy range must hold over wide viscosity swings or with paraffinic / waxy crude (turbine K-factor shifts above 10 cSt), or the regime requires direct mass measurement rather than inferred mass from volume + density. Cost trade-off: Coriolis is 3-5x the price of an equivalent turbine, justified by the inline density + temperature and the ±0.1 % spec.
How does the dual-pulse output work with a prover loop?+
The custody Coriolis ships with a dual-pulse output (two pulse channels with a fixed phase relationship, A leading B by 90 degrees or A and B reading opposite-direction pulses depending on the protocol). The dual-pulse pair lets a small-volume prover or ball prover detect any single-channel pulse-counting fault during the prove run, by cross-checking the A and B channels against each other in real time. Pulses are scaled at the transmitter (selectable kg/pulse or t/pulse) and terminate at the prover counter on a shielded twisted pair. The factory pre-configures the dual-pulse channel scaling at the order stage to match the buyer’s prover loop counter and the service flow range; field adjustment is available through the transmitter HART or RS-485 interface.
How does density and temperature on the loop drive net-volume correction?+
Refined-product invoicing is settled in net volume at a standard reference temperature, typically 15 °C for the metric world or 60 °F for the US. The custody Coriolis outputs live medium density (accuracy ±0.002 g/cm³) and live medium temperature (accuracy ±1 °C) on the same instrument as the mass flow value, through HART or RS-485 Modbus RTU. The fiscal flow computer (downstream of the meter, supplied by the buyer or by a flow-computer vendor) takes mass flow, density at service, and temperature at service; converts mass to gross volume at service using density; then converts gross volume at service to net volume at the reference temperature using the petroleum-industry volume correction tables. No external densitometer or thermowell installation needed at the meter run.
How does the fiscal metrology regime work for this meter?+
Custody transfer is governed by the local fiscal-billing regime, which varies by country and by industry. Common regimes include the European metrology directives on liquid measuring systems, the petroleum industry measurement standards published by trade associations in the US, the relevant ISO standards on hydrocarbon liquids, and the international metrology recommendations on measuring systems for liquids other than water. Type approval under any of these regimes is buyer-arranged with a notified body or designated calibration authority in the buyer’s jurisdiction. ProFlow ships each custody Coriolis with the build documentation needed for that submission: the ISO 9001 calibration certificate listing the K-factor and density coefficients, the calibration-rig traceability record, the construction drawing set, and the audit-trail logger access record. The factory does not hold ex-factory fiscal-regime certification; that is buyer-arranged in the buyer’s jurisdiction.
What is the lead time and how is each meter calibrated?+
Standard lead time is 5 to 7 business days from order confirmation, factory direct. Each custody Coriolis ships with an ISO 9001 calibration certificate listing the K-factor (mass calibration coefficient), the density coefficient pair (D1 and D2 for the medium reference), the calibrated DN, the tested flow range, and the zero-point stability value for that serial. Calibration is performed on a gravimetric water rig at the factory at three flow points across the service range, with three repeat runs at each point. For high-value custody fits the buyer can arrange witness calibration at a third-party flow lab before shipment; the factory coordinates the lab booking and ships to the lab address. Hazardous-area certification is Ex d [ia] IIC T6 Gb (flameproof body with intrinsically-safe sensor connection) standard; IP67 ingress standard; ambient range −40 to +60 °C on the standard transmitter.

Need help sizing a custody Coriolis?

Send line size, service P/T, medium and viscosity, fiscal regime, prover type, flow target. Engineering replies in 1 day; lead time 5–7 business days.