MKE Engineering provides dedicated hybrid integrated ultra accurate efficient measurement skid technology in liquid applications worldwide using the primary metering techniques as turbine, ultrasonic, coriolis and positive displacement.A complete assembly of equipment that is designed to measure the quantity and quality of a liquid. The metering system includes, meters, strainers, density meter, flow conditioning sections, valves, prover skid, samplers,control system, flow computers, programmable logic controllers, metering supervisory computers, etc. data archiving, report generation, system integrity checks, alarm logging and operator interface for a metering system.MKE Engineering provided integrated systems of meters, meter provers and control equipments,which are field proven in the intended application.
The following data’s used to design the measurement system in our own facility.
We are providing dedicated master meter skids. Protection against vibration, dust and mechanical damage during transportation and handling to be provided for all master meters.
Tank provers shall conform to the requirements of API manual of petroleum measurement standards, chapter 4.4. each tank prover shall have a volume equal to twice the maximum volume that can pass through the meter in one minute maximum continuous flow rate capacity x 2 min.
MKE Engineering conform to the requirements of API manual of petroleum measurement standards, chapters 4.2 and 4.6. MKE Engineering Small Volume Prover design is based on international standards and certifications including mechanical, electrical, instrumentation assembly in our unit.Mechanical Design in accordance with API MPMS Chapter 4.2 and OIML R119.
MKE Engineering provides bi-directional in design. Bi-directional provers shall be furnished in accordance with international standards. The volume between etector switches shall be sufficient to ensure the accumulation of at least 10,000 unaltered pulses during each 1-way trip of the prover displacer. The K factor, pulse output per unit volume used for prover sizing shall equal 95% of the lowest nominal K factor from the meters to be proved. The diameter for a bi-directional prover shall be selected to limit the displacer velocity in the calibrated section to 1.5 m/s (5 ft/s) at the maximum normal linear flow rate for the largest meter to be proved.
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