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ORIFICE VENTURI and ROTAMETER APPARTUS
ORIFICE VENTURI and ROTAMETER APPARTUS

ORIFICE VENTURI and ROTAMETER APPARTUS

MOQ : 1 Piece

ORIFICE VENTURI and ROTAMETER APPARTUS Specification

  • Capacity
  • 2 to 5 LPM (Flow Range)
  • Accuracy
  • 1% of Full Scale
  • Model No
  • FM OFVOR 11
  • Measurement Range
  • 0-5 LPM
  • Voltage
  • 220V AC
  • Feature
  • Demonstrates Bernoullis Theorem, Differential Pressure Measurement, Direct Flow Comparison
  • Frequency
  • 50 Hz
  • Automation Grade
  • Manual
  • Temperature Range
  • Ambient to 50C
  • Core Components
  • Orifice Meter, Venturi Meter, Rotameter, Manometer, Acrylic and SS Fittings
  • Power Source
  • Electric
  • Equipment Materials
  • Borosilicate Glass, MS powder coated, Stainless Steel, PVC Tubing
  • Type
  • Fluid Mechanics Laboratory Apparatus
  • Usage
  • Educational (Fluid Mechanics Experiments)
  • Display Type
  • Manometer/Scale
  • Dimension (L*W*H)
  • 1200 mm x 400 mm x 800 mm
  • Weight
  • Approx. 30 kg
 
 

About ORIFICE VENTURI and ROTAMETER APPARTUS



Experience pinnacle precision with our ORIFICE VENTURI and ROTAMETER APPARATUSunbeatable in performance and versatility for fluid mechanics labs. This top-notch 3-in-1 setup enables pivotal investigations into Bernoullis theorem, differential pressure, and direct flow comparison. Order today; limited stock is available, so buy online to secure exceptional quality educational equipment. Featuring 6 manometer tubes (mercury/water), 1% full-scale accuracy, robust borosilicate glass rotameter, and a powder coated frame with castor wheels, it stands out as the go-to choice for reliable demonstrations. Crafted in India, supplied worldwide!

ORIFICE VENTURI and ROTAMETER APPARATUS: Versatile Laboratory Applications

Designed for educational settings, this apparatus is ideal for conducting pivotal experiments in fluid mechanics. Widely used in engineering colleges, research labs, and technical institutes, it demonstrates hydraulic principles such as Bernoullis theorem and measures differential pressure and direct flow using orifice, venturi, and rotameter methods. Built for general and specific use cases, it is essential for student experiments, academic research, and practical industry demonstrations, both as a bench-top or floor-standing installation.


Supply Ability, Export Markets & Payment Terms for ORIFICE VENTURI and ROTAMETER APPARATUS

Benefit from competitive market value and a transparent asking price on this top-rated educational tool. As a trusted exporter, manufacturer, and supplier in India, we ensure regular supply for bulk institutional orders and prompt shipments worldwide. Our main export markets include Asia, Africa, and the Middle East. Charges can be settled through diverse payment terms, including wire transfer and letter of credit, making procurement flexible and convenient for global clients.


FAQs of ORIFICE VENTURI and ROTAMETER APPARTUS:


Q: How does the ORIFICE VENTURI and ROTAMETER APPARATUS demonstrate Bernoullis theorem?

A: This apparatus allows direct observation of fluid flow through orifice, venturi, and rotameter setups, illustrating pressure and velocity variations to concretely demonstrate Bernoullis theorem.

Q: What are the specific applications of this apparatus in a laboratory setting?

A: It is used for differential pressure measurement, direct flow comparison, calibration studies, and hands-on demonstrations of hydraulic principles for engineering students and researchers.

Q: Where can the apparatus be installed in the lab?

A: The equipment is designed for versatile placement and can be conveniently mounted either on a bench top or as a floor-standing unit, providing adaptability to various laboratory layouts.

Q: What is the process for ordering and what are the stock levels?

A: As stock is limited, customers are encouraged to order today and buy online or through export channels. Orders are processed promptly with worldwide shipping available.

Q: How accurate are the measurements using this fluid mechanics apparatus?

A: The system delivers highly reliable readings with an accuracy of 1% of the full scale, making it suitable for precise educational and research applications.

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