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Laminar Turbulent Flow Apparatus
Laminar Turbulent Flow Apparatus
Laminar Turbulent Flow Apparatus
Laminar Turbulent Flow Apparatus
Laminar Turbulent Flow Apparatus
Laminar Turbulent Flow Apparatus

Laminar Turbulent Flow Apparatus

Price 10 INR/ Piece

MOQ : 100 Pieces

Laminar Turbulent Flow Apparatus Specification

  • Automation Grade
  • Manual
  • Product Type
  • Laminar Turbulent Flow Apparatus
  • Accuracy
  • 1% (flow rate)
  • Frequency
  • 50 Hz
  • Usage
  • Laminar Turbulent Flow Apparatus
  • Temperature Range
  • Ambient to 50C
  • Power Source
  • Electric (AC Mains)
  • Measurement Range
  • 0.5 to 10 LPM (flow rate)
  • Core Components
  • Flow tube, water tank, centrifugal pump, manometers
  • Model No
  • LM-TB-01
  • Capacity
  • Approx. 20 liters (tank capacity)
  • Voltage
  • 220V AC
  • Feature
  • Clearly visualizes transition from laminar to turbulent flow
  • Equipment Materials
  • Stainless steel and acrylic
  • Type
  • Laminar Turbulent Flow Apparatus
  • Display Type
  • Analog
  • Dimension (L*W*H)
  • 1000 x 400 x 600 mm
  • Weight
  • Approx. 28 kg
 

Laminar Turbulent Flow Apparatus Trade Information

  • Minimum Order Quantity
  • 100 Pieces
  • 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 Laminar Turbulent Flow Apparatus

Laminar Turbulent Flow Apparatus

Our company is the major in offering Laminar Turbulent Flow Apparatus to the clients. This product is widely used to measures. Laminar Turbulent Flow Apparatus is offered in different specifications as per clients requirements. Offered range is highly acknowledged among clients due to its impeccable finish, excellent robustness and optimum performance.


Features:

  •  Low maintenance
  • Less space consumed
  • High efficiency 

 

RANGE OF EXPERIMENTS:

1. Laminar /Turbulant flow study with respect Reynold number

2. Head loss comparison in Laminar /Turbulent flow

3. Velocity profile in Laminar /Turbulent flow using pitot tube



Observe Flow Transitions and Verify Fluid Principles

With its acrylic tube and analog display, the Laminar Turbulent Flow Apparatus enables students and researchers to observe the distinct transition between laminar and turbulent flows in real time. This direct visualization aids in understanding fundamental fluid dynamics principles. The precise flow control valve and centrifugal pump ensure accurate and reproducible conditions for a variety of experiments.


Robust Construction and User Safety

Engineered for durability and user protection, the apparatus features a powder-coated frame, stainless steel components, and acrylic tubing. The centrifugal pump is safeguarded by overload protection, improving longevity and ensuring safe operation. The analog display and included instruction manual make the setup straightforward for educational and research purposes.


Versatile Applications in Fluid Mechanics Labs

Designed for versatility, the apparatus is suited for hydraulics laboratory sessions, demonstrations, and training. Its adjustable flow range, from 0.5 to 10 LPM, supports diverse experiments on flow regimes and pressure differentials. Standard accessories, simple manual operation, and compatibility with ambient to 50C water make it ideal for academic settings.

FAQs of Laminar Turbulent Flow Apparatus:


Q: How does the Laminar Turbulent Flow Apparatus demonstrate the transition between laminar and turbulent flows?

A: The apparatus uses a clear acrylic tube that allows direct observation of the water flow pattern. By adjusting the flow control valve, users can increase or decrease the flow rate, visualizing the transition from orderly laminar flow to chaotic turbulent flow. This visual evidence is supplemented by differential pressure readings from the manometers.

Q: What measurement accuracy does the system offer for flow rates?

A: The apparatus provides a flow rate measurement accuracy of 1%, enabling precise and consistent results during fluid mechanics experiments. The flow can be regulated from 0.5 to 10 LPM using the adjustable valve.

Q: When should the overload protection feature for the pump be utilized?

A: The overload protection is always active when the apparatus is in operation. It automatically safeguards the centrifugal pump from electrical or mechanical overloads, ensuring safe use and preventing equipment damage during extended or intensive experimental sessions.

Q: Where are the manometers located, and what is their function?

A: The two manometers are connected across the flow tube to measure differential pressure accurately. They provide real-time analog readings that are essential for understanding pressure variations in both laminar and turbulent regimes.

Q: What is the procedure for conducting an experiment with this apparatus?

A: Begin by filling the water tank (capacity: approx. 20 liters), then switch on the centrifugal pump. Adjust the flow control valve to set the desired flow rate within the 0.5 to 10 LPM range. Observe the fluid pattern through the acrylic tube and record pressure readings from the manometers. Standard accessories like measuring cylinder and connecting tubes assist in data collection.

Q: Why is acrylic chosen as the material for the flow tube?

A: Acrylic provides excellent transparency, making it easy to visually observe the flow characteristics and transitions between laminar and turbulent states. It is also durable and corrosion-resistant, ensuring longevity under laboratory conditions.

Q: What benefits does this apparatus offer for fluid mechanics education?

A: The Laminar Turbulent Flow Apparatus engages students with hands-on experiments, reinforces theoretical concepts, and provides accurate measurements. Its manual controls, clear display, and visual observation capability make it highly effective for classroom demonstrations and practical training in hydraulics and fluid dynamics.

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