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Venturi Meter
Venturi Meter

Venturi Meter

Price 10 INR/ Piece

MOQ : 1 Piece

Venturi Meter Specification

  • Temperature Range
  • 0C to 60C
  • Core Components
  • Transparent Venturi tube, Manometer, Inlet/Outlet connectors, Mounting Frame
  • Model No
  • VM-LAB-01
  • Measurement Range
  • 10 to 250 lph (Liter per hour)
  • Product Type
  • Venturi Meter
  • Power Source
  • Not required (operates by water pressure)
  • Accuracy
  • 1% of full scale
  • Application
  • Hydraulic Fluid Mechanic Lab Equipments
  • Usage
  • Hydraulic Fluid Mechanic Lab Equipments
  • Automation Grade
  • Manual
  • Feature
  • Corrosion resistant, Clear flow observation, Easily mountable
  • Capacity
  • As per requirement
  • Equipment Materials
  • Borosilicate Glass, Stainless Steel, Brass Fittings
  • Type
  • Venturi Meter
  • Display Type
  • Analog (Manometer tubes)
  • Dimension (L*W*H)
  • 1000 x 200 x 300 mm (approx.)
  • Weight
  • Approx. 8-12 kg
 

Venturi Meter Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Export Market(s)
  • Asia, Middle East, Africa
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Venturi Meter

Venturimeters Cast Iron:

Micro Teknik

Made of cast iron with gun metal bushes. The ends are flanged which can be easily connected of pipe line. They are made of the following sizes of pipes having Internal diameter.

(A) 25 mm (b) 38 mm (c) 50 mm 

 An educational Venturi tube that allows students to study the Venturi meter and Bernoullis Theorem and to make direct comparisons between the results obtained by experimentation and those predicted by theory.

A Venturi meter is used to determine the flow rate of fluid in a pipe. Venturi Meter is comprised of a horizontal Venturi tube, a downstream flow-control valve and eleven pressure tappings connected to water manometers (piezometers). A common manifold above the piezometers includes an air pressure control valve.

The inclusion of eleven piezometers allows study of the pressure distribution along the convergent-divergent passage within the Venture tube.

The is designed for use with the Gravimetric or Volumetric Hydraulics Benches (available separately). These benches measure absolute flow rate which can be used by students to find the Venturi meter coefficients over a range of flow conditions.

The Venturi meter is a device used to measure the flow rate. As shown, it consists of a tapering contraction section, along which the fluid accelerates towards a short cylindrical throat, followed by a section which diverges back to its original diameter.

As velocity increases from the inlet section to the throat, there is a fall in pressure, the magnitude of which depends on the rate of flow. The flow rate may therefore be inferred from the difference in pressure, as measured by pizometers placed upstream and at the throat.

The device is used to determine the discharge coefficient or the Venturi meter coefficient (C).



Innovative Flow Measurement for Laboratory Precision

The Venturi Meter VM-LAB-01 offers an outstanding solution for hydraulic laboratories seeking accuracy and durability. Its transparent construction allows for direct observation of water movement within the instrument, while high-grade borosilicate glass, stainless steel, and brass fittings ensure exemplary resistance to corrosion and wear. With customizable capacity and analog manometer tubes, this meter supports research and practical learning.


Effortless Installation and Versatile Application

Designed to be user-friendly, the Venturi Meter can be installed via either threaded or flanged connectors. Its adjustable connection sizes (12 mm, 15 mm, or 20 mm) accommodate a variety of experimental setups. Lightweight for its class and requiring no electricity, setup and integration into any hydraulic fluid mechanics curriculum is seamless.

FAQs of Venturi Meter:


Q: How does the VM-LAB-01 Venturi Meter measure water flow in laboratory settings?

A: The VM-LAB-01 measures water flow by channeling water through a transparent venturi tube, causing a pressure drop that is indicated on analog manometer tubes. The difference in water column height, read in millimeters, enables calculation of flow rates with high accuracy.

Q: What connection sizes are available for this Venturi Meter, and how do I choose the right one?

A: This Venturi Meter supports connection sizes of 12 mm, 15 mm, and 20 mm. The selection depends on your experimental setup and required flow capacity. These options ensure compatibility with various lab equipment and piping systems.

Q: When should the Venturi Meter be used in a hydraulic fluid mechanics laboratory?

A: This device is ideal for use during experiments or demonstrations requiring precise measurement of water flow and pressure differences. It is particularly useful for educational investigations, calibration activities, and research projects on fluid dynamics.

Q: Where can the VM-LAB-01 be installed, and does it require any power source?

A: The meter is designed for use on laboratory benches or within hydraulic workstations, mounted via its robust frame. It operates solely by water pressure and requires no external power source, increasing convenience and safety.

Q: What is the measurement range and accuracy of this Venturi Meter?

A: It can measure water flow within the range of 10 to 250 liters per hour (lph), with an accuracy of 1% of full scale, providing reliable results for most lab applications.

Q: How can users benefit from the transparent design and corrosion-resistant materials?

A: The transparent borosilicate glass body enables students and researchers to closely observe fluid behaviors and flow patterns. Corrosion-resistant materials (stainless steel, brass, glass) ensure long-term durability and consistent performance, even with regular use.

Q: What is the process for installing and using this Venturi Meter?

A: Installation involves connecting the device using either threaded or flanged ends to your water supply line, mounting it securely, and ensuring proper sealing. Operation is manual and straightforwardsimply allow water to flow, observe the manometer readings, and record values for analysis.

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