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Nozzle Pressure Distribution ThermoFlux – 7103

Category: Thermodynamics Lab Equipment  ·  Country of Origin: India

Product Overview

Nozzle Pressure Distribution ThermoFlux – 7103 is a laboratory apparatus for studying nozzle pressure distributionin convergent and de Laval (convergent-divergent) nozzles using air as the compressible working fluid. Three interchangeable brass nozzles with pressure measurement points are included: one convergent nozzle and two de Laval nozzles with short and long extensions. Upstream pressure is adjustable via a compressed air regulator (0 to 8.6 bar, max. 10 bar supply). Back pressure is controlled by a needle valve on the flow meter. Air consumption is approximately 5 g/s. Temperature is measured across -100 to 400°C. Pressure is recorded at 10 measuring points (-1 to 9 bar). Flow rate is measured up to 25 m³/h. Instruments include a manometer, digital temperature display (upstream and downstream), and rotameter. The unit demonstrates subsonic and supersonic flow, shock waves, an…

Nozzle Pressure Distribution ThermoFlux – 7103
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Technical Specifications

Nozzle Pressure Distribution ThermoFlux – 7103: Technical Specifications

Parameter Value
Working Fluid Air (compressible)
Compressed Air Supply: Maximum 10 bar
Air Consumption Approx. 5 g/s
Compressed Air Regulator Control Range 0 to 8.6 bar
Back Pressure Control Needle valve on the flow meter
Nozzles Included 3 brass nozzles with pressure measurement points
Nozzle 1 Convergent nozzle
Nozzle 2 De Laval nozzle, short nozzle extension
Nozzle 3 De Laval nozzle, long nozzle extension
Nozzle Material Brass
Temperature Measurement Range -100 to 400°C
Pressure Measurement 10 x measuring points, range: -1 to 9 bar
Flow Rate Measurement Range Up to 25 m³/h
Instruments Manometer, digital temperature display (upstream and downstream), rotameter
Software Optional DAQ software (National Instruments LabVIEW environment)
Software Compatibility Any Windows environment

Technical Data

Air Supply

Parameter Value
Compressed Air: Maximum 10 bar
Air Consumption Approx. 5 g/s

Compressed Air Regulator

Parameter Value
Control Range 0 to 8.6 bar

Nozzles

Nozzle Detail
Material Brass (all 3 nozzles)
Nozzle 1 De Laval nozzle, short nozzle extension
Nozzle 2 De Laval nozzle, long nozzle extension
Nozzle 3 Convergent nozzle

Measuring Ranges

Parameter Range
Temperature -100 to 400°C
Pressure 10 x -1 to 9 bar
Flow Rate Up to 25 m³/h

Key Features

Key Features


Experiments


Construction and Design

The Nozzle Pressure Distribution ThermoFlux – 7103 is designed around a compressed air supply system with three interchangeable brass nozzles, each fitted with pressure measurement points along the flow direction.

Upstream pressure is set using a compressed air regulator with a control range of 0 to 8.6 bar. The maximum supply pressure is 10 bar, with an approximate air consumption of 5 g/s. A needle valve on the flow meter controls back pressure downstream of the nozzle. This dual adjustment capability enables independent setting of upstream and downstream pressures, which is essential for full nozzle pressure distribution characterisation across subsonic, supersonic, and shock wave regimes.

Three brass nozzles are supplied: one convergent nozzle for subsonic range investigations and two de Laval nozzles (combining convergent and divergent contours) with short and long nozzle extensions for supersonic and shock wave studies. All nozzles include pressure measurement points along the flow path, enabling the full pressure curve to be recorded in the direction of flow.

Instrumentation includes a manometer, a digital temperature display for upstream and downstream positions, and a rotameter for flow rate measurement. Temperature is measured across -100 to 400°C. Pressure is measured at 10 points over the range -1 to 9 bar. Flow rate is measurable up to 25 m³/h.


Software (Optional): ThermoFlux – 7103

DAQ software is specially designed in the National Instruments LabVIEW environment to measure and calculate results from the apparatus. The software is optional. When software is used, a set of electronic sensors is included. The software is compatible with any Windows environment.


Scope of Delivery


Optional Accessories

Standards & Compliance

Ordering & Delivery

Frequently Asked Questions

Q: What nozzles are included with the Nozzle Pressure Distribution ThermoFlux – 7103?
A: Three interchangeable brass nozzles are included, each with pressure measurement points: one convergent nozzle for subsonic investigations, one de Laval nozzle with a short nozzle extension, and one de Laval nozzle with a long nozzle extension for supersonic and shock wave studies.

Q: What is the choking effect and how does this unit demonstrate it?
A: The choking effect occurs when the mass flow rate through a nozzle stops increasing upon reaching the critical pressure ratio (Laval pressure ratio). The unit demonstrates this by adjusting the upstream and downstream pressures using the compressed air regulator and needle valve, allowing the critical condition to be reached and observed directly.

Q: What are the compressed air supply requirements for this apparatus?
A: The unit requires a compressed air supply with a maximum pressure of 10 bar. Air consumption is approximately 5 g/s. The on-board compressed air regulator has a control range of 0 to 8.6 bar.

Q: What parameters are measured in the nozzle pressure distribution experiments?
A: The unit measures temperature (-100 to 400°C), pressure at 10 measuring points (range: -1 to 9 bar), and flow rate (up to 25 m³/h). Instruments include a manometer, digital temperature display upstream and downstream of the nozzle, and a rotameter.

Q: Is PC-based data acquisition available for the ThermoFlux – 7103?
A: Yes, as an optional feature. An optional DAQ software package developed in the National Instruments LabVIEW environment enables PC-based data recording and analysis. The software is compatible with any Windows environment and is supplied with a set of electronic sensors.

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