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Hydraulic Flow Demonstrator
Hydraulic Flow Demonstrator

Hydraulic Flow Demonstrator

Price 100 INR/ Unit

MOQ : 1 Unit

Hydraulic Flow Demonstrator Specification

  • Automation Grade
  • Semi-Automatic
  • Number of Specimens
  • 1
  • Temperature
  • 5C to 45C
  • Mounting Type
  • Bench Top
  • Test Range
  • 0.1 to 5 L/min
  • Specimen Size
  • Standard Hydraulic Fittings
  • Accuracy
  • 1% of reading
  • Response Time
  • <1 second
  • Product Type
  • Hydraulic Flow Demonstrator
  • Features
  • Transparent Flow Section, Quick Coupling Ports, Adjustable Flow Meter
  • Measuring Range
  • 0.1 to 5 L/min
  • Resolution
  • 0.01 L/min
  • Frequency
  • 50 Hz
  • Power Supply
  • 230V AC, 50 Hz
  • Max Height
  • 500 mm
  • Humidity
  • 40% - 80% RH (non-condensing)
  • Interface Type
  • Panel Mounted
  • Display Type
  • Digital LCD
  • Application
  • Hydraulic Machinery and Power Tools
  • Operating Voltage
  • 230V AC
  • Port Size
  • 1/2 inch BSP
  • Equipment Type
  • Hydraulic Flow Demonstrator
  • Usage
  • Hydraulic Machinery and Power Tools
  • Capacity
  • 5 L
  • Machine Weight
  • Approx. 25 kg
  • Test Speed
  • Variable, up to 5 L/min
  • Test Stroke
  • Up to 120 mm
  • Control Mode
  • Manual/Automatic
 

Hydraulic Flow Demonstrator 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 Export Market(s)
  • Middle East, Asia, Africa
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Hydraulic Flow Demonstrator

Hydraulic Flow Demonstrator: MTFM-40


The flow channel of the Hydraulic Flow Demonstrator is constructed using clear acrylic for visibility and is supported by a floor-standing, metal frame fitted with castors for mobility. The flow channel consists of an inlet tank with overflow and flow stilling arrangement, a rectangular working section and a discharge tank. Control valves and adjustable weirs allow the flow conditions to be varied independently at the entry to and exit from the working section. The working section can be flooded to create a closed conduit or operate partially filled as an open channel. The most important feature of this equipment is the adjustable section of the bed which together with its transition section (ramps) may be raised and lowered using an external actuator while the water is still flowing. This facility affords a striking demonstration of the significance of channel critical depth.


DEMONSTRATION CAPABILITIES


Closed Conduit Flow

  • Application of the Bernoulli and Continuity equations to converging and diverging flow
  • Effect of gradual and sudden changes in cross section (energy losses)
  • Using a contraction as a flow-measuring device
  • Using a Piton tube to measure velocity / velocity profile
  • Flow through a culvert
  • Open Channel Flow
  • Flow beneath an undershot weir (sluice gate)
  • Flow over sharp-crested, broad-crested and ogee weirs
  • Using hydraulic structures to measure flow in an open channel
  • Effect of changes in upstream and downstream water level
  • Characteristics of clinging, aerated, depressed and drowned napes
  • Subcritical critical and supercritical flow/ depth.
  • Changes in specific energy and control imposed by the minimum energy condition
  • Characteristics of hydraulic jumps
  • Force and energy conditions in a hydraulic jump
  • Flow patterns associated with hydraulic jumps
  • Flow over drop structures / energy dissipation
  • Changes in flow profile in relation to the Froude Number (predicting flow conditions in an open channel)
  • Observation of flow patterns associated with flow around hydraulic structures
  • Velocity of gravity waves in shallow water / Formation of surface waves near critical depth
  • Project work evaluation of user-constructed hydraulic structures

TECHNICAL SPECIFICATIONS

  • Maximum operating flow rate: 1.6 l/s
  • A floor-standing flow channel for use with a hydraulics bench
  • Working section 77mm wide 150mm high and 1100mm long
  • Clear acrylic sides for good visibility of flow patterns created
  • Stilling arrangement at inlet to promote smooth flow into the working section
  • Section of bed can be elevated continuously and locked at the required height
  • Discharge tank incorporates flow-control valve for convenience in setting up
  • Total and static heads indicated on multi-tube manometer connected to Piton tubes and static tapings at three locations in working section
  • Piton tubes mounted through bed of channel for ease of priming and height adjustment (can be traversed from floor to roof to measure velocity profile)
  • Transparent scales allow measurement of all important heights and levels
  • Models of hydraulic structures supplied include undershot weir (sluice gate) at the inlet, overshot weir at the outlet, sharp-crested weir, broad-crested weir (also used to create a culvert) and ogee weir
  • Suitable for project work with alternative hydraulic structures (user created)
  • Optional direct reading flow meter to aid setting up of demonstrations



Exceptional Flow Visualization

Experience clear observation of laminar and turbulent flows in real time. The demonstrators high-transparency construction in borosilicate glass and polycarbonate allows students and professionals to study flow characteristics with minimal distortion, making it ideal for lessons and practical demonstrations.


Robust Safety Features and Easy Operation

Safety is prioritized with pressure relief valve and protective shielding, helping users perform experiments with confidence. The interface is panel-mounted and features a digital LCD for easy data viewing, while quick coupling ports and adjustable flow controls streamline operation for beginners and experts alike.


Precise Measurement and Control

Achieve accurate flow measurements with a resolution of 0.01 L/min and a response time of under a second. Variable test speeds, manual/automatic control modes, and adjustable flow meters empower users to replicate a wide range of hydraulic scenarios for educational or industrial applications.

FAQs of Hydraulic Flow Demonstrator:


Q: How is hydraulic flow visualized in this demonstrator?

A: The device uses highly transparent borosilicate glass and polycarbonate sections, enabling clear visualization of laminar and turbulent flows. This allows observers to study fluid dynamics directly, making it suitable for educational demonstrations and practical training.

Q: What safety features are included with the demonstrator?

A: To ensure safe operation, the demonstrator includes a pressure relief valve and protective shielding. These features help prevent accidental over-pressurization and protect users from potential hazards during experiments.

Q: Where can the Hydraulic Flow Demonstrator be used?

A: It is suitable for classroom laboratories, research centers, and industrial training environments focused on hydraulic machinery and power tools. Its portable, bench-top design makes it easy to install wherever needed.

Q: What types of specimens and flows can be tested with this equipment?

A: The demonstrator supports testing standard hydraulic fittings with laminar and turbulent flow types. It accommodates one specimen at a time within the 5-liter capacity and offers a test stroke up to 120 mm.

Q: When should I opt for manual or automatic control modes during testing?

A: Manual mode provides hands-on control for exploratory experiments, while automatic mode ensures consistent, repeatable results for standard testing protocols. The choice depends on your educational or operational requirements.

Q: How does the demonstrator benefit educational institutions?

A: It enables interactive learning through real-time observation, accurate digital measurement, and safe experimentation. Students gain practical insights into hydraulic behavior, enhancing theoretical knowledge with hands-on experience.

Q: What is the process for setting up and operating the equipment?

A: Simply mount the unit on a bench, connect the included hoses to the test specimen and the flow demonstrator, select desired flow parameters on the digital LCD panel, and initiate testing using either manual or automatic controls. The user manual provides step-by-step guidance for optimal operation.

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