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Bernoulli Apparatus
Bernoulli Apparatus
Bernoulli Apparatus
Bernoulli Apparatus

Bernoulli Apparatus

Price 100 INR/ Unit

MOQ : 1 , , Unit

Bernoulli Apparatus Specification

  • Measuring Range
  • 0 to 300 mm (water manometer)
  • Temperature
  • 5C to 40C
  • Max Height
  • Approx. 1.2 meters
  • Operating Voltage
  • 230V AC
  • Mounting Type
  • Table top
  • Automation Grade
  • Manual
  • Resolution
  • 1 mm (water level)
  • Port Size
  • 12 mm (Inlet & Outlet)
  • Test Range
  • Designed for educational demonstration
  • Equipment Type
  • Bernoulli Apparatus
  • Power Supply
  • 230V AC, 50 Hz, Single Phase
  • Display Type
  • Scale (manometric tube with scale)
  • Humidity
  • Up to 95% non-condensing
  • Response Time
  • Immediate (analog reading)
  • Accuracy
  • 1 mm (manometric reading)
  • Number of Specimens
  • Single flow channel
  • Application
  • Fluid Machines Equipments
  • Specimen Size
  • Channel length approx. 1 meter
  • Gas Pressure
  • Not Applicable (Water based apparatus)
  • Usage
  • Fluid Machines Equipments
  • Hardness
  • Acrylic test section, Mild Steel frame
  • Interface Type
  • Manual/Analog
  • Features
  • Transparent test section, multi-point manometer, easily drainable tank
  • Product Type
  • Bernoulli Apparatus
  • Frequency
  • 50 Hz
  • Capacity
  • Tank capacity approx. 20 liters
  • Machine Weight
  • Approx. 15 kg
  • Control Mode
  • Manual
 

Bernoulli Apparatus Trade Information

  • Minimum Order Quantity
  • 1 , , Unit
  • Supply Ability
  • 100 Units Per Week
  • Delivery Time
  • 1 Week
  • 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 Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Bernoulli Apparatus

We manufacture and export premium quality Bernoullis apparatus, which is based on the industry laid parameters. The rectangular transparent flow section of the unit allows water to be flown. The waters velocity changes across the sectional area of channel changes.

Experiments: Verificarion of Bernoullis Theorem experimentally

Utilities Needed:

  • 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
Technical Specifications:
  • Electric supply: 0.5 kW, 220V AC, Single Phase
  • Stainless Steel Inlet Tank Capacity: 20 Ltrs.
  • Stainless Steel Supply Tank Capacity: 85 Ltrs.
  • Stainless Steel Measuring Tank Capacity: 40 Ltrs., fitted with Piezometer Tube & scale
  • Piezometer Tubes: Material P.U. Tubes (9 Nos.)


Transparent Observation and Measurement

The acrylic channel and transparent test section allow students and instructors to directly observe water flow and pressure changes along the channel. Six manometer points with leak-proof rubber tubing facilitate accurate differential pressure measurement. This setup provides immediate visual and analog feedback, reinforcing theoretical fluid dynamics concepts.


Robust Design for Educational Use

Built with a powder-coated mild steel frame and a durable acrylic channel, the apparatus is intended for stationary, tabletop installation. Its compact form factorrequiring only 1.5 m x 0.5 maccommodates most classroom or lab spaces. The equipment is designed for long-term use, with easy-to-drain tanks and intuitive manual operation suitable for students.


Comprehensive Learning and Demonstration

The Bernoulli Apparatus employs a volumetric flow measurement method using a measuring tank, supporting hands-on experiments in fluid machines courses. The included instruction manual and accessories ensure straightforward setup and use. Students benefit from practical demonstrations of theoretical principles, preparing them for advanced studies in hydraulics and fluid mechanics.

FAQs of Bernoulli Apparatus:


Q: How does the Bernoulli Apparatus demonstrate Bernoullis Theorem?

A: The apparatus demonstrates Bernoullis Theorem by allowing water to flow through a transparent open channel where pressure at six different points is shown using manometric tubes. As students adjust the flow, they can observe changes in velocity and pressure, visualizing the inverse relationship predicted by Bernoullis principle.

Q: What materials are used in the construction of this Bernoulli Apparatus?

A: The apparatus is made with a transparent acrylic channel for clear observation and a sturdy mild steel frame with a powder-coated blue finish. Rubber tubing ensures leak-proof pressure connections, combining durability and visibility for educational use.

Q: When is this equipment typically used in an educational context?

A: This apparatus is primarily used during demonstrations and experiments in fluid machines and hydraulics courses. It is suitable for undergraduate and technical training programs where understanding of fluid behavior and pressure-velocity relationships is required.

Q: Where should the Bernoulli Apparatus be installed?

A: Installation is recommended on a stationary, flat tabletop with an area of approximately 1.5 meters by 0.5 meters. The apparatus should be placed in a laboratory or classroom setting with standard electrical supply and minimal exposure to dust or humidity beyond 95%.

Q: What is the process for measuring the pressure and flow within the channel?

A: Water from the overhead tank flows through the channel. The flow is controlled manually via a dedicated valve and the volumetric method is used for measurement with a measuring tank. Pressure at six positions along the flow is captured by manometric tubes connected along the channel, giving immediate analog readings.

Q: How is the apparatus used and maintained during and after demonstrations?

A: During use, students fill the tank, set the desired flow rate, and record pressure readings from the scale. After the experiment, the easily drainable tank and overflow drainage help maintain the apparatus. Routine cleaning of the channel and tubes is suggested to keep the equipment in optimal condition.

Q: What benefits does this apparatus provide to educators and students?

A: The apparatus offers direct, hands-on interaction with fluid mechanics principles, enabling students to visualize theoretical knowledge through real-time experiments. Its accuracy, reliability, and straightforward setup make it a valuable teaching tool for reinforcing complex fluid dynamics concepts.

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