Pipe Friction Apparatus | FluidoSurge-X 168
A CE-certified apparatus for studying head losses due to pipe friction in laminar and turbulent flow regimes, manufactured by Scientico India to ISO 9001:2015 standards. Supplied with calibration certificate, operation manual, and complete export documentation. Designed for Fluid Mechanics laboratories in engineering colleges and technical institutions.
The Pipe Friction Apparatus FluidoSurge-X 168 is designed for experimental determination of friction losses in pipe flow. It enables study of both laminar and turbulent flow regimes under controlled conditions. The apparatus allows measurement of head loss and determination of critical Reynolds number. It is suitable for fluid mechanics laboratory instruction and experimental analysis.
Product Overview
The SCIENTICO Pipe Friction Apparatus FluidoSurge-X 168 provides a complete experimental setup for studying frictional losses in small diameter pipes. For laminar flow experiments, water is supplied from an adjustable elevated head tank that maintains a constant head. For turbulent flow studies, water supply is provided from a hydraulic bench or laboratory water mains through rapid action hose couplings. Pressure losses across the test section are measured using pressure tapings connected to water and mercury manometers.
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CE-certified, ISO 9001:2015 compliant. Supplied to universities and institutions in 60+ countries.
WhatsApp: +91 701-586-5225 | Email: [email protected]
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Concept guide: the significance of Reynolds number.
| Parameter | Specification |
|---|---|
| Model | FluidoSurge-X 168 |
| Type | Pipe Friction Apparatus |
| Application | Pipe Friction Loss Measurement |
| Flow Regimes | Laminar and turbulent |
| Maximum Flow Rate | 30 L/h |
| Test Pipe Length | Greater than 500 mm |
| Test Pipe Bore | 3 to 4 mm |
| Flow Control | Needle valve |
| Elevated Tank Capacity | Approx. 1 to 1.8 L |
| Head Tank Type | Adjustable cylindrical tank with level indicator |
| Water Manometer | Inverted U tube, 0 to 500 mm |
| Mercury Manometer | U tube, 0 to 500 mm |
| Water Supply | Hydraulic bench or laboratory water connection |
Key Features-
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Experimental setup for measuring pipe friction losses
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Study of laminar and turbulent flow regimes
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Adjustable elevated tank for constant head laminar flow experiments
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Needle valve for precise flow rate control
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Measurement of head loss using water and mercury manometers
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Determination of critical Reynolds number
Applications-
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Measurement of pressure loss in pipe flow
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Study of friction factor for laminar and turbulent regimes
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Determination of critical Reynolds number
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Verification of theoretical pipe flow relationships
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Fluid mechanics and hydraulics laboratory experiments
Construction & Design Details-
The apparatus includes a small bore test pipe mounted securely with pressure tapings at appropriate locations.
An adjustable elevated cylindrical tank provides a constant head supply for laminar flow experiments.
Manometers are arranged for clear reading of pressure differences across the test section.
Rapid action hose couplings enable easy connection to a hydraulic bench or laboratory water supply.
Export & Supply Capability
SCIENTICO manufactures the Pipe Friction Apparatus FluidoSurge-X 168 for domestic and international supply.
The unit is suitable for export to engineering colleges, universities, and technical training laboratories.
Standard packing, accessories, and documentation are provided with each unit.
Q1. What flow regimes can be studied using this apparatus?
Both laminar and turbulent flow regimes can be studied.
Q2. How is pressure loss measured?
Pressure loss is measured using inverted U tube water manometer and U tube mercury manometer.
Q3. Is mercury supplied with the apparatus?
No, mercury is not supplied due to transport regulations.
Q4. How is flow rate controlled during experiments?
Flow rate is controlled using an integrated needle valve.
Q5. What water supply is required for operation?
The apparatus can operate using a hydraulic bench with closed water circuit or a laboratory water connection.
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