Agenda Coriolis Flow Meter Theory of Operation Bunkering Marine Fuel Management Viscosity Questions.

Slides:



Advertisements
Similar presentations
Coriolis Technology.
Advertisements

Thermo-energy audit Services for thermo-energy audit Flow measurement.
MEDIDOR DE FLUJO MÁSICO
Monroe L. Weber-Shirk S chool of Civil and Environmental Engineering Closed Conduit Measurement Techniques  Pipeline systems  Transmission lines  Pipe.
Washington University ChE 433 Digital Process Control Laboratory
Chapter 15 Oscillations Oscillatory motion Motion which is periodic in time, that is, motion that repeats itself in time. Examples: Power line oscillates.
New Compact Low-Flow Measurement and Control Technologies Stephen P. Glaudel.
Volume Flow Measurements. Obstruction Meters u Orifice Meters u Venturi Meters u Flow Nozzles.
Flow Measurement.
Fluid mechanics 3.1 – key points
Monroe L. Weber-Shirk S chool of Civil and Environmental Engineering Closed Conduit Measurement Techniques ä Pipeline systems ä pipe networks ä measurements.
The Changing Face of Precision Flow Measurement. Flowmeter Selection Process Tendency to stay with what’s worked in past Gathering information often difficult.
FLOW METER SELECTION SEMINAR
Electromagnetic Flowmeter Why use flow meters What is a magnetic flow meter – How do they work – How are the different from other meters Items that will.
On-Line Physical Measurements Terry A. Ring Department of Chemical Engineering University of Utah.
Flow Measurement M. Shahini.
1 Syafruddin Hasan. 2 Systems Concepts Automated systems that control flow rates or volume employ the following components: Automated systems that control.
1 Anayet Karim. 2 Course Evaluation Test 1Test 1 Test 2Test 2 Assignment 1Assignment 1 Assignment 2Assignment 2 Lab ModuleLab Module Final ExamFinal Exam.
Process Variables and Sensors. Parts and materials needed for today (instructor will provide): DP transmitters Thermocouples Filled-bulb temperature sensor.
1 Syafruddin Hasan. 2 Systems Concepts Automated systems that control flow rates or volume employ the following components: Automated systems that control.
Sensors used in EFI (Electronic Fuel Injection)
Flow Sensors.
Sensor Systems for CPI Sensor Transmitter temperature sensors
CBE 150A – Transport Spring Semester 2014 Flow Measurement and Control.
ACADs (08-006) Covered Keywords Flow rate, total flow, differential pressure, percent flow, cotameter, Bernouli. Description Supporting Material
Flow Measurements Identify an effect that depends on flowrate
EKT314/4 Electronic Instrumentation
MECHANISMS OF HEAT TRANSFER
Temperature Measurement
Gas and Liquid Metering. Why Metering? Measuring flow rate and cumulative volume Selling System Control Losses detection Reservoir outlets Pumping stations.
CENTRE OF EXCELLENCE (CHEMICAL SECTOR)
Lease Automatic Custody Transfer
ISA–The Instrumentation, Systems, and Automation Society Omega Tube Design Extends the Usability of Coriolis Technology in Mass Flowmetering Applications.
Rudolf Žitný, Ústav procesní a zpracovatelské techniky ČVUT FS 2010 Flowrate Experimental methods E EXM5 Some pictures and texts were copied from.
Instructor: Lichuan Gui
Wedge Flow Element 1.
Momentum. NEWTON’S LAWS Newton’s laws are relations between motions of bodies and the forces acting on them. –First law: a body at rest remains at rest,
March 2010 Hastings Product Training Flow Products Overview.
Instrument Training Material
Flow Measurement Muhajir Ab. Rahim School of Mechatronic Engineering
The decision to harvest the grapes is imminent! What factors determine when the grapes are picked and when vinification (wine-making) begins? The graph.
Bunkering in the 21 st Century G.R.Bowler,Inc. Marine Controls 2261 Lake Rd. Ontario,NY USA
Flow Measurement and Control. Orifice Meter The orifice meter consists of an accurately machined and drilled plate concentrically mounted between two.
CE 1501 CE 150 Fluid Mechanics G.A. Kallio Dept. of Mechanical Engineering, Mechatronic Engineering & Manufacturing Technology California State University,
ELECTRIC MOTORS & GENERATORS Andrew Holliday. Motors and Generators Simple devices that use basic principles of electromagnetic theory Technologically.
Flow Measurement and Control
Seminar on, “ CALIBRATION TECHNIQUES FOR MAGMETERS” Presented By, Bhushan Patil Guided By, Prof. A.S. Kulkarni.
Rosemount 485 Annubar® Flowmeter Series
Announcement Field trips: Thursday 8 am on UT Campus Meet at the main entrance of ECJ (2 nd floor) Friday 8 am St. Edward's University Meet at the main.
GOVERNMENT ENGINEERING COLLEGE, BHARUCH (014) Chemical Engineering department SEM-iii Sub: fluid flow operation topic: orifice meter & rotAmeter Guid by:
Micro Motion, Inc. Gas Measurement.
Phil. U., M Eng Dep., Measurements, Chap#7 flow measurements is very important as it covers wide ranges of applications. The flow rate measurement devices.
An Angular velocity Transducers: Inductive Transducer: Inductive transducers may be either the self-generating or the passive type. The self-generating.
FRP company proprietary 1 ; Apr-98 Coriolis Technology.
1 Sensors and Transducers. 2 Physical Process Measurand Signal variable Display X S Measurement M Simple Instrument Model Physical Measurement variable.
1 TRANSDUCER. 2 Contents To understand the basic concept of Transducer To learn about Block diagram of transducer Different Applications of transducers.
Micro MotionProprietary Micro Motion, Inc. Density Solutions.
UNDERSTANDING DIFFERENT
INTRODUCTION TO ELECTRONIC INSTRUMENTATION
The rate of change of velocity.
Water Meter Overview Travis Smith.
GOVERNMENT ENGINEERING COLLEGE, BHARUCH.
CENTRE OF EXCELLENCE (CHEMICAL SECTOR)
Forging new generations of engineers
اندازه گیری جریان سیال.
Oscillations AP Physics C.
UNIT - 4 HEAT TRANSFER.
Agenda Coriolis Flow Meter Theory of Operation Bunkering
Forging new generations of engineers
Simple Harmonic Motion
Presentation transcript:

Agenda Coriolis Flow Meter Theory of Operation Bunkering Marine Fuel Management Viscosity Questions

Coriolis Flowmeter Technology Direct mass measurement is insensitive to fluid properties such as: Temperature Pressure Density 2 The same amount of fluid (1 Tonne) looks like 2.7% (~$18) difference with volumetric measurement 1000L 1027L 1 Tonne $654 1 Tonne. $654 Bunkers sold on mass but measured by inferred volume $54,000 difference on a 3000 Tonne bunker Source: Bunkerworld, April 28th 22 °C (40°F) Change

Theory of Operation Slide 3 The Coriolis effect is an inertia force. In 1835, Gustave-Gaspard de Coriolis showed that this inertia force must be taken into consideration if the simple Newton’s Law of Motion of bodies are to be used in a rotating frame of reference. Gasparde de Coriolis Coriolis Effect: The original path is deflected westward by the rotation of the planet

Typical Components of a Coriolis Meter

Theory of Operation – Mass Flow In a Coriolis meter, the inertial force is provided by vibrating the flow tubes. The tube twist or angle of deflection from the vibration plane is measured and converted into a mass flow measurement. Micro Motion Confidential Page 5

Theory of Operation – Mass Flow Process fluid enters the sensor and flow is split with half the flow through each tube. The sensor flow tubes are vibrated in opposition to each other by energizing a drive coil. Tubes are oscillated at their natural frequency. Magnet and coil assemblies, called pick-offs, are mounted on the flow tubes. As each coil moves through the uniform magnetic field of the adjacent magnet it creates a voltage in the form of a sine wave. Micro Motion Confidential Page 6

Theory of Operation – Mass Flow During a no flow condition, there is no Coriolis effect and the sine waves are in phase with each other. When fluid is moving through the sensor's tubes, Coriolis forces are induced causing the flow tubes to twist in opposition to each other. The time difference between the sine waves is measured and is called Delta-T which is directly proportional to the mass flow rate.

Theory of Operation – Mass Flow The Flow Calibration Factor consists of 10 characters, including two decimal points. – The first five digits are the flow calibration factor. This calibration factor, multiplied by a given Delta-T, yields mass flow rate in grams/sec. – The last three digits are a temperature coefficient for the sensor tube material. This coefficient compensates for the effect of temperature on tube rigidity (% change in rigidity per 100°C). Three wire platinum RTD measures tube temperature on inlet side of sensor –Accurate to +/- 1.0 o C –Available as additional process variable RTD Applies to liquid and gas, and is linear throughout the entire range of the meter Micro Motion Confidential Page 8

Theory of Operation - Density

Theory of Operation -Temperature

Coriolis Multi-Variable Capability On-Line Density Temperature Direct Mass Flow Three process variables measured independently

Coriolis Technology Multi-Variable Measurement Capability Density-dependant variables are also available as either; – Standard Curves (Brix, API, HFCS, etc) – Customer-specific Curves (% Mass, % Volume, Alcohol, etc) Mass Flow Temperature Density Volume Flow Specific Gravity Net Solids % Solids By Mass % Solids By Volume Temperature Mass Flow Degrees API Degrees Baume Degrees Brix Degrees Plato % Solids % Mass % Black Liquor Concentration Specific Gravity Alcohol % HFCS SCFM

Theory of Operation - Volume Volumetric Flow is a calculated variable. Volume can be referenced to standard temperature using the temperature input. Coriolis meters are preferred for volume measurements. – Low pressure drop – Wide turndown – High accuracy – High degree of linearity

Coriolis Sensor Geometries All Geometries are not created equal Design trade-offs are made for such things as; – Flow sensitivity & turndown – Density accuracy – Fluid S.G. range (gas/liquid) – Materials of construction – Temperature effects – Drainability and Cleanability – Pressure limits

Why Coriolis – Volume Measurement Coriolis meters are unaffected by flow profiles, and provide higher turndown than a typical velocity-based volumetric meters Slide D 6 D Flow conditioner Orifice plate, Vortex or Turbine No straight run à No Reynolds # Limits à No parts to wear out à Limits leak points/fugitive emissions à Lower life cycle costs à Low installed costs

Marine Industry Applications Fuel Bunkering Engine Fuel Control Fuel Viscosity Pleasure Cruise Cargo Ship Navy Supply Platform

Benefits of a 1% Measurement Improvement Bunker fuel represents 50-70% of total ship operating expense Example: Large container ship-7,750 TEU – Summer 2010 $455/tn*200tn/day*200 days operating = $18.2M – Winter 2011 bunkers $655tn*200tn/day*300 days operating = $39.3M – Next summer ???? What does a 1% measurement improvement mean to you? – Last summer $182K potential savings – Now $393K potential savings – Reduced billing discrepancies The technology is here today that can benefit suppliers, barge operators and shipping companies