About Orifice Meter Apparatus
Sharp Edge Orifice Meter
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- Measurement of two phase flow is very important for geothermal steam field management.
- Existing measurements techniques are reviewed and the advantages of the sharp edge orifice plate are presented.
- Existing two phase flow correlations using the orifice plate are examined using field data from several geothermal fields.
- It was demonstrated that none of the existing correlations can be universally applied without case by case calibration.
- A new time discreet model was developed and tested and is currently used by the geothermal industry.
Accurate Flow Measurement for Diverse ApplicationsEngineered for both reliability and precision, the Orifice Meter Apparatus provides hands-on training in the measurement and calibration of fluid flow rates. Its centrifugal pump and transparent U-tube manometer enable clear demonstrations of core hydraulic principles, essential for geothermal steam field management and related studies. The standard 12 mm orifice plate can be customized to fit various experimental requirements.
Safe and User-Friendly DesignWith overload and overheat protection, this apparatus safeguards both the user and equipment during operation. The ergonomic hand-operated valve gives intuitive flow control, while the visible measuring tank (25 L) and Bourdon type pressure gauge enhance ease of use. The bench or floor mount flexibility ensures convenient setup in any laboratory environment.
FAQs of Orifice Meter Apparatus:
Q: How is the flow rate measured using the Orifice Meter Apparatus?
A: The flow rate is determined by observing the differential pressure across the orifice plate, read from the U-tube manometer. Manual data recording and easy adjustments via the hand-operated valve aid in precise measurement and calibration.
Q: What are the main components included in the OME-102 system?
A: This model includes a stainless steel orifice plate, centrifugal pump, acrylic U-tube manometer, measuring tank (25 L), brass and acrylic fittings, and a Bourdon pressure gauge. Piping, manual flow control, and overload protection are also integrated.
Q: When should the overload and overheat protection be checked?
A: It is advised to verify the proper function of overload and overheat protection before each use, particularly in high-demand or continuous operation scenarios, to prevent any equipment damage or hazards.
Q: Where can the Orifice Meter Apparatus be installed?
A: The apparatus is versatile and can be mounted on a benchtop or placed on the floor, depending on laboratory space and experimental needs.
Q: What is the benefit of using a transparent acrylic manometer in this setup?
A: The transparent acrylic U-tube manometer allows clear visualization of fluid levels, making differential pressure readings more accurate and easily observable during demonstrations or experiments.
Q: How is data recorded and what is the accuracy of this equipment?
A: Data is recorded manually using readings from the manometer and pressure gauge. The apparatus offers a measurement accuracy of 1% of full scale, ensuring reliable experimental results.