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Bernoulli's Theorem Apparatus
Bernoulli's Theorem Apparatus

Bernoulli's Theorem Apparatus

MOQ : 1 Piece

Bernoulli's Theorem Apparatus Specification

  • Automation Grade
  • Manual
  • Voltage
  • 230 V
  • Power Source
  • 230V AC
  • Usage
  • Hydraulic Fluid Mechanic Lab Equipments
  • Frequency
  • 50 Hz
  • Capacity
  • 10-15 Litres
  • Model No
  • BT-2024
  • Accuracy
  • 1 mm in manometer reading
  • Core Components
  • Flow Channel, Manometer Tubes, Water Circulation System, Panel Board
  • Application
  • Hydraulic Fluid Mechanic Lab Equipments
  • Measurement Range
  • 0-450 mm (Manometer)
  • Temperature Range
  • Ambient
  • Product Type
  • Bernoullis Theorem Apparatus
  • Feature
  • Transparent Perspex Channel, Detachable Scale, Corrosion Resistant, Precise Measurement
  • Equipment Materials
  • Borosilicate Glass Tube, Stainless Steel, Powder Coated Mild Steel Frame
  • Type
  • Bernoullis Theorem Apparatus
  • Display Type
  • Scale Graduated Manometers
  • Dimension (L*W*H)
  • 900 mm x 500 mm x 1000 mm
  • Weight
  • Approx. 20-25 kg
  • Number of Manometer Tubes
  • 6
  • Test Section
  • Convergent-Divergent Type
  • Working Medium
  • Water
  • Max Flow Rate
  • Approx. 6 L/min
  • Flow Control
  • Regulating Valve
  • Pump Type
  • Centrifugal Pump (if included)
  • Material of Manometer Tubes
  • Borosilicate Glass
 

Bernoulli's Theorem Apparatus 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 Bernoulli's Theorem Apparatus

Bernoullis Theorem Complete with Collecting Tank:

Micro Teknik

 We offer Bernoullis Theorem Apparatus that is designed for experimental verification of the theorem. The Bernoullis Theorem Apparatus is easy to set up and operate and is manufactured exactly as per the set guidelines. The set up consists of a one piece clear acrylic test section with convergent and divergent part sections, supply thank, measuring tank, inlet water tank and pump for closed loop water circulation. The test section is connected to Piezometer Tubes through pressure tapping at different locations on the section to demonstrate the Bernoullis Theorem. The flow rate of water is measured using measuring tank and stop watch provided.

Objective

  • To verify Bernoullis Theorem experimentally
Features
  • Acrylic test section
  • Closed loop water circulation
  • Compact & stand alone set up
  • Stainless Steel tanks and wetted parts
  • Superb Painted structure
  • Simple to operate & maintain
Utilities Required
  • Electric supply : 0.5 kW, 220V AC, Single Phase
  • Water supply :Tap water connection BSP Distilled water @ 60 liters (optional)
  • Floor Area with Drain facility



High-Precision Measurements

Equipped with six borosilicate glass manometer tubes and scale graduated markings, the apparatus allows accurate pressure readings along the convergent-divergent flow channel. The 1 mm accuracy ensures reliable data for analysis, making it ideal for academic demonstrations and experiments related to Bernoullis theorem.


Robust and Transparent Construction

The apparatus is built using high-grade borosilicate glass, stainless steel, and powder-coated mild steel, ensuring corrosion resistance and longevity. Its transparent Perspex channel allows clear observation of water flow and experimental processes, enhancing the learning experience and enabling precise measurement and analysis.


User-Friendly Operation and Versatility

Featuring a regulating valve for smooth flow control, a detachable scale for flexible measurement, and a manual automation grade, this apparatus supports hands-on learning. Its compact design and portable dimensions (900 mm x 500 mm x 1000 mm) make it suitable for various lab setups in academic institutions throughout India.

FAQs of Bernoullis Theorem Apparatus:


Q: How is Bernoullis Theorem demonstrated using this apparatus?

A: The apparatus uses a transparent convergent-divergent channel and six manometer tubes filled with water to visually and quantitatively demonstrate changes in fluid pressure and velocity, illustrating Bernoullis theorem in real-time. Data is recorded as water flows through the test section, supported by accurate manometer readings.

Q: What materials are used in constructing the manometer tubes and main components?

A: The manometer tubes are made of durable borosilicate glass, while the supporting frame is constructed from powder-coated mild steel, with stainless steel used for select fittings. The transparent flow channel is made of Perspex to offer clear visibility.

Q: When should the water medium be replaced or maintained in the system?

A: Water used as the working medium should be replaced periodically, depending on lab usage and the observation of any contamination or sediment. Regular maintenance ensures the system operates efficiently without clogging or loss of measurement accuracy.

Q: Where is the apparatus best suited for use?

A: This apparatus is designed for hydraulic and fluid mechanics laboratories in academic institutions, research facilities, and training centers. Its robust build and versatile set-up cater well to a range of experimental and demonstration requirements.

Q: What is the process for measuring pressure differences using this apparatus?

A: As water circulates through the convergent-divergent channel, pressure at six different points is displayed on scale graduated manometers. The pressure difference is calculated by observing fluid height variations, allowing users to analyze the application of Bernoullis principle accurately.

Q: How does the regulating valve and centrifugal pump enhance experiment control?

A: The regulating valve allows fine adjustment of the water flow rate through the test section, while the centrifugal pump (if included) ensures steady water circulation. This provides users with precise control over experimental conditions and measurement repeatability.

Q: What are the primary benefits of using this Bernoullis Theorem Apparatus in the laboratory?

A: The apparatus provides accurate, visual, and hands-on demonstration of fluid mechanics concepts, is durable due to its high-quality materials, offers corrosion resistance, and features a user-friendly design with portable dimensions, making it suitable for various educational environments across India.

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