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Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus
Laminar And Turbulent flow Apparatus

Laminar And Turbulent flow Apparatus

Price 500.0 INR/ Piece

MOQ : 1 Piece

Laminar And Turbulent flow Apparatus Specification

  • Voltage
  • 230V AC
  • Automation Grade
  • Manual
  • Feature
  • Demonstrates transition from laminar to turbulent flow
  • Measurement Range
  • 0 to 1000 mm W.G.
  • Model No
  • LTFA-10
  • Accuracy
  • 1% of full scale
  • Core Components
  • Test section, flow control valves, manometer, water tank, pump
  • Temperature Range
  • Ambient to 80C
  • Frequency
  • 50-60 Hz
  • Power Source
  • Electric
  • Capacity
  • 10 Litres
  • Equipment Materials
  • Mild Steel
  • Type
  • Training Equipment
  • Usage
  • Laboratory and educational demonstration
  • Display Type
  • Analog Differential Pressure Gauge
  • Dimension (L*W*H)
  • 850 x 400 x 1000 mm
  • Weight
  • Approx 25 kg
  • Educational Relevance
  • Suitable for fluid mechanics experiments
  • Manometer Type
  • Water manometer with graduated scale
  • Test Section Material
  • Transparent acrylic for clear observation
  • Operation Mode
  • Bench-top
  • Connection Type
  • Flexible PVC tubing
  • Fluid Used
  • Water
  • Pump Type
  • Centrifugal pump, corrosion resistant
  • Measurement Method
  • Capillary tube and flow visualization
  • Flow Rate Range
  • 0.5 to 6.5 L/min
 

Laminar And Turbulent flow Apparatus Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Payment Terms
  • Telegraphic Transfer (T/T), Cash Advance (CA), Letter of Credit (L/C), Cash in Advance (CID), Cheque
  • Supply Ability
  • Piece
  • Delivery Time
  • 2 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)
  • Asia, Eastern Europe, Western Europe, Middle East, Africa
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Laminar And Turbulent flow Apparatus

Laminar And Turbulent flow Apparatus

Laminar flow

The type of flow in which the particles move in a straight line in the form of a thin parallel sheets is known as the Laminar flow. Laminar flow denotes a steady condition where all stream lines follow parallel paths. Under this condition, the dye will remain easily identifiable as a solid core.

Turbulent flow

The type of flow in which the particles move in a zigzag pattern is known as the turbulent flow. Turbulent flow denotes as unsteady condition where stream lines interact causing shear plan collapse and mixing occurs. As the flow rate is increased, the transition from laminar to turbulent flow is a gradual process. This zone of change is defined as transitional flow. This will appear as a wandering dye stream prior to dispersion as turbulence occurs.

Experimental study of Laminar, Transitional and Turbulent Flow
  • Hydraulic bench.
  • Osborne Reynolds apparatus.
  • Dye.
  • Osborne Reynolds apparatus includes the following parts.
  • Support columns.
  • Visualization pipes.
  • Outlet control valve.
  • Needle.
  • Reservoir.
  • Marble glasses (kanchi) for smoothness of flow.
  • Starter.
  • Overflow pipe.
  • Inlet pipe.
  • Dye reservoir.
  • Bil mouth.
  • Dye control valve.


Observe Laminar and Turbulent Flow in Real Time

The apparatus makes it possible to visually distinguish between laminar and turbulent flow using a transparent acrylic test section. With flow rate control from 0.5 to 6.5 L/min, users easily demonstrate and study flow transitions relevant to fluid mechanics education.


Reliable Measurement and Control

A water manometer with graduated scale ensures accurate pressure readings, while analog differential pressure gauges provide clear data within a 1% error margin. Flow control valves and flexible PVC tubing enable precise adjustment and setup for various test scenarios.


Robust and User-Friendly Design

Constructed with mild steel and corrosion-resistant materials, the apparatus supports repeated educational use. The 10-litre water tank and centrifugal pump guarantee consistent operation, and easy-to-connect components facilitate convenient bench-top laboratory setup.

FAQs of Laminar And Turbulent flow Apparatus:


Q: How does the Laminar and Turbulent Flow Apparatus demonstrate flow transition?

A: The apparatus uses a transparent acrylic test section with flow visualization techniques. By adjusting the flow rate with control valves and observing the fluid (water), users can see the transition from laminar to turbulent flow in real time.

Q: What measurement method is employed by this equipment?

A: It utilizes capillary tubes for precise flow measurement and a water manometer with a graduated scale to determine pressure differences, aiding in the analysis of various flow regimes.

Q: Where is this apparatus typically used?

A: This training equipment is most commonly used in laboratories and educational settings for fluid mechanics experiments and demonstrations, allowing students to study fundamental flow phenomena.

Q: What core components are included in the apparatus?

A: Key components are the transparent test section, centrifugal pump, water tank, manometer, flow control valves, flexible PVC tubing, and analog differential pressure gauge, supporting hands-on experimentation.

Q: What is the main benefit for educational institutions using this apparatus?

A: It enables students and researchers to directly observe and measure flow transitions, reinforcing theoretical concepts in fluid mechanics and fostering practical understanding.

Q: How accurate are the measurements provided by the device?

A: The analog differential pressure gauge offers accuracy of 1% of full scale, while the water manometer and other measurement tools ensure reliable data within the devices full range.

Q: When should this apparatus be utilized during laboratory studies?

A: It is best used when teaching or researching fluid dynamics concepts, specifically for demonstrations and experiments regarding flow types, pressure measurement, and flow rate analysis.

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