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Losses in pipe Line Due to Sudden Enlargement
Losses in pipe Line Due to Sudden Enlargement

Losses in pipe Line Due to Sudden Enlargement

Price 10 INR/ Piece

MOQ : 1 Piece

Losses in pipe Line Due to Sudden Enlargement Specification

  • Power Source
  • 230V AC
  • Temperature Range
  • Ambient 5C to 50C
  • Feature
  • Demonstrates head loss due to sudden enlargement in pipeline, Transparent section for flow visualization, Accurate pressure measurement
  • Capacity
  • 2-5 LPM (customizable)
  • Automation Grade
  • Manual
  • Product Type
  • Losses in pipe Line Due to Sudden Enlargement
  • Application
  • Hydraulic Fluid Mechanic Lab Equipments
  • Model No
  • HFM/ENL-2024
  • Accuracy
  • 1% of FSD (measurement)
  • Frequency
  • 50 Hz
  • Usage
  • Hydraulic Fluid Mechanic Lab Equipments
  • Measurement Range
  • Pressure: 0-1000 mm WC; Flow: 0-10 LPM
  • Voltage
  • 230V
  • Core Components
  • Enlargement Test Section, Manometer setup, Water Circulation Pump, Flow Control Valve, Collecting Tank, Piping Network
  • Equipment Materials
  • Mild Steel Powder Coated Frame, Transparent Acrylic or Borosil Glass tube, PVC Pipe fittings
  • Type
  • Educational Demonstration Apparatus
  • Display Type
  • Analog manometer or digital sensor (as per model)
  • Dimension (L*W*H)
  • 1000 x 300 x 500 mm (approx.)
  • Weight
  • 18-25 kg (approx.)
 

Losses in pipe Line Due to Sudden Enlargement 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 Losses in pipe Line Due to Sudden Enlargement

Losses in pipe Line Due to Sudden Enlargement:

Micro Teknik

Our company is instrumental in the manufacturing and trading of premium quality Study of Pipe Fittings, Sudden Enlargement & Contraction App
These products are manufactured under strict supervision in accordance with the industry set norms and parameters. Offered apparatus is a self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates.

Experiments:

  • To determine loss of head in the fittings at various water flow rates
  • To measure the loss coefficient for the pipe fittings
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

Technical Specifications:

  • Sudden Enlargement: From 15 mm to 25 mm
  • Sudden Contraction: From 25 mm to 15 mm
  • Bend: 1/2
  • Elbow: 1/2
  • Ball valve: 1/2
  • Gate valve: 1/2
  • Instruction Manual: An english instruction manual will be provided along with the Apparatus
  • The whole set-up is well designed and arranged in a good quality painted structure


Demonstrating Pipe Losses in Lab Settings

This apparatus makes it straightforward to observe and quantify head losses caused by sudden pipe enlargement. Thanks to its transparent pipeline materials, users can visually track water flow and examine how velocity changes influence pressure drops, facilitating deeper understanding of theoretical and practical concepts in hydraulics.


Flexible Measurement and Visualization

The system is equipped with inclined or vertical manometers with a measuring scale, allowing both analog and digital readouts for various learning requirements. It features customizable flow rates, quick-release connections, and a transparent enlargement test section to support diverse educational experiments and thorough analysis.


User-Friendly and Durable Design

Designed for ease of use, the apparatus can be quickly assembled and maintained. The sturdy powder-coated frame, combined with chemical-resistant plastic pipes, ensures long-term durability while minimizing maintenance. Compact dimensions and manageable weight make it suitable for most educational laboratory spaces.

FAQs of Losses in pipe Line Due to Sudden Enlargement:


Q: How does this apparatus demonstrate head loss due to sudden enlargement in a pipeline?

A: The apparatus allows users to observe how water flow experiences a pressure drop when moving from a narrow to a wider pipe section, which is a classic head loss scenario. This is measured using the inclinded or vertical manometer connected across the enlargement, showing the difference in water column height and allowing calculation of head loss.

Q: What are the major components included with the setup?

A: The system comprises a test section for pipe enlargement, a water circulation pump, manometer setup (analog or digital), flow control valve, collecting tank, transparent piping, and a robust, powder-coated frame. These elements enable accurate observation and measurement of hydraulic losses.

Q: When is this equipment typically used in an academic setting?

A: This apparatus is most commonly used in undergraduate and technical courses related to fluid mechanics and hydraulic engineering, enabling students to connect theoretical learning with real-world experiments.

Q: Where should the apparatus be installed for best results?

A: The equipment is designed for table top mounting, ideally in a controlled laboratory environment with access to ambient temperatures between 5C and 50C and a standard 230V AC power source.

Q: What is the process for conducting an experiment with this device?

A: To conduct an experiment, connect the quick-release couplings, fill the system with water, adjust the flow rate using the control valve, and record pressure differences across the enlargement using the manometer. Observations can be visualized through the transparent pipes for deeper understanding.

Q: How does use of transparent acrylic and PVC components benefit users?

A: Transparent materials allow clear visualization of water flow patterns before and after the enlargement, enhancing both demonstration and insight into fluid behavior which is essential for educational and diagnostic purposes.

Q: What are the key benefits of using this apparatus for hydraulic studies?

A: Key benefits include hands-on understanding of head losses, accurate pressure measurement (1% of FSD), customizable flow rates, and easy flow visualization. The apparatus is robust, user-friendly, and supports both qualitative demonstrations and quantitative research.

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