🔎 ISO 9001:2015 & CE Certified Lab Equipment Manufacturer — Get CIF Quote in 24 Hours → WhatsApp Now
ISO 9001:2015 Certified CE Marked Equipment Exporting Since 1993 60+ Countries Served Quote in 24 Hours

Free and Forced Convection Heat Exchanger | ThermoFlux – 7027

A CE-certified heat transfer apparatus for measuring LMTD, overall heat transfer coefficient, and effectiveness under parallel/counter flow conditions, manufactured by Scientico India to ISO 9001:2015 standards. Supplied with calibration certificate, operation manual, and complete export documentation. Designed for Thermodynamics Lab Equipment laboratories in engineering colleges and technical institutions.

The Free and Forced Convection Heat Exchanger ThermoFlux – 7027 is a fully self-contained laboratory apparatus for investigating convective heat transfer in a vertical air duct using interchangeable heated surface modules. This Free and Forced Convection Heat Exchanger enables quantitative determination of heat transfer coefficients, temperature profiles, and heat flux for flat surfaces, finned surfaces, and tube bundle arrays under both free and forced convection conditions.

The ThermoFlux – 7027 Free and Forced Convection Heat Exchanger provides a structured experimental platform for studying the fundamental mechanisms of convective heat transfer as applied to industrial heat exchanger design. The apparatus centres on a vertical air duct (120 × 120 mm flow cross-section, 1000 mm height) into which plug-in heated surface modules of known dimensions are presented to the air stream for detailed thermal analysis.

Three standard heating modules are supplied — a finned surface, a pipe bundle, and a flat surface — each rated at 150 W. An axial fan mounted at the top of the duct delivers the controlled air stream for forced convection experiments; free convection studies are conducted with the fan inactive. Each module may also be used independently on the bench in horizontal orientation to establish free convection coefficients outside the duct.

The control panel integrates temperature measurement, continuously variable heating power control (0–100 W output with direct watt readout), and fan speed control. Temperature is measured to a resolution of 0.1°C using thermocouple sensors with direct digital readout in °C. Air velocity is measured using a portable anemometer mounted on the duct. All heating elements are subject to a 90°C temperature limitation.

Optional modules — a plain cylinder, a cylinder with heating foil for local heat transfer investigation, and a plate surface — extend the experimental scope. The optional ThermoFlux – 7027 DAQ software, developed in the National Instruments LabVIEW environment, displays temperatures, heating power, and air velocity, and calculates results automatically.

Free and Forced Convection Heat Exchanger ThermoFlux – 7027 — Technical Specifications

Parameter Detail
Product Name Free and Forced Convection Heat Exchanger
Model ThermoFlux – 7027
Duct Flow Cross-Section 120 × 120 mm
Duct Height 1000 mm
Fan Position Axial fan at top of duct
Heating Element Temperature Limit 90°C
Heating Power Control Continuously variable, 0–100 W, direct watt readout
Temperature Measurement Resolution 0.1°C
Temperature Sensors Thermocouple sensors with direct digital readout (°C)
Air Velocity Measurement Portable anemometer mounted on duct
Fins — Number of Fins 7
Fins — Heating Power 150 W
Fins — Heat Transfer Area 0.14 m²
Pipe Bundle — Number of Tubes 20
Pipe Bundle — Heating Power 150 W
Pipe Bundle — Heat Transfer Area 0.06 m²
Flat Surface — Heating Power 150 W
Flat Surface — Surface Area 0.013 m²
Cylinder with Even Surface Temperature (Optional) — Heating Power 150 W
Cylinder with Even Surface Temperature (Optional) — Heat Transfer Area 0.0112 m²
Software (Optional) ThermoFlux – 7027 DAQ software, LabVIEW-based, Windows compatible

Technical Data

Air Duct

Parameter Value
Flow Cross-Section 120 × 120 mm
Height 1000 mm
Fan Axial, top-mounted

Heating Elements — Standard (Supplied)

Module Heating Power Heat Transfer Area Additional Data
Finned Surface 150 W 0.14 m² 7 fins
Pipe Bundle 150 W 0.06 m² 20 tubes
Flat Surface 150 W 0.013 m²

Heating Elements — Temperature Limitation

Parameter Value
Maximum Surface Temperature 90°C

Optional Modules

Module Heating Power Heat Transfer Area
Cylinder with even surface temperature 150 W 0.0112 m²
Plate surface 150 W 0.01 m²
Cylinder with heating foil (local heat transfer) 150 W 0.0112 m²

Key Features

  • Complete Free and Forced Convection Heat Exchanger: Fully self-contained vertical duct apparatus with three interchangeable 150 W plug-in surface modules and integrated instrumentation
  • Vertical air duct: 120 × 120 mm flow cross-section, 1000 mm height; axial fan at top for forced convection air stream
  • Finned surface module: 7 fins, 150 W heating power, 0.14 m² heat transfer area
  • Pipe bundle module: 20 tubes, 150 W heating power, 0.06 m² heat transfer area
  • Flat surface module: 150 W heating power, 0.013 m² surface area
  • Temperature limit: 90°C on all heating elements
  • Continuously variable heating power: 0–100 W output with direct watt readout from control panel
  • Temperature measurement: Thermocouple sensors, 0.1°C resolution, direct digital readout in °C
  • Air velocity measurement: Portable anemometer mounted on duct
  • Dual convection modes: Fan-on for forced convection; fan-off for free convection — same modules used in both modes
  • Horizontal bench use: Each module operable independently on the bench in horizontal orientation for free convection coefficient determination
  • Optional surface modules: Plain cylinder (0.0112 m², 150 W), cylinder with heating foil for local heat transfer study, plate surface
  • Optional DAQ software: ThermoFlux – 7027 LabVIEW-based software displays temperatures, heating power, and air velocity; calculates results automatically; Windows compatible

Experiments

  • Demonstration of the relationship between input power and surface temperature in free convection
  • Demonstration of the relationship between input power and surface temperature in forced convection
  • Demonstration of the use of extended surfaces to improve heat transfer
  • Determination of the temperature distribution along an extended surface
  • Comparison between free and forced convection for finned surface
  • Comparison between free and forced convection for pinned surface
  • Comparison between free and forced convection for flat surface
  • Comparison between vertical and horizontal finned surfaces in free convection
  • Comparison of heat transfer surface efficiency
  • Comparison between the coefficient of heat transfer and Nusselt number for free and forced convection
  • Temperature profile along pinned and finned surfaces

Construction and Design

The Free and Forced Convection Heat Exchanger ThermoFlux – 7027 is constructed as a fully self-contained vertical duct unit with a 120 × 120 mm flow cross-section and 1000 mm height, housing an axial fan at the top to supply the forced convection air stream. Three plug-in heated surface modules of known geometry — finned surface (7 fins, 0.14 m²), pipe bundle (20 tubes, 0.06 m²), and flat surface (0.013 m²) — are supplied as standard; each is rated at 150 W and subject to a 90°C surface temperature limit. Modules mount directly into the duct and may also be used independently in horizontal bench orientation for free convection studies. The control panel provides continuously variable heating power from 0 to 100 W with direct watt readout, fan speed control, and thermocouple-based temperature measurement at 0.1°C resolution with direct digital readout in °C. A portable anemometer mounts on the duct for air velocity measurement. This Free and Forced Convection Heat Exchanger supports optional modules — a plain cylinder (0.0112 m², 150 W), a cylinder with heating foil for local heat transfer investigation, and a plate surface — which extend the experimental capability beyond the standard scope of delivery. The optional LabVIEW-based DAQ software integrates with an electronic sensor set to display temperatures, heating power, and air velocity, and to calculate experimental results automatically under Windows environments.


Software

ThermoFlux – 7027 DAQ Software (Optional)

  • Developed in National Instruments™ LabVIEW™ environment
  • Displays temperatures, heating power, and air velocity; calculates experimental results
  • Compatible with all Windows™ operating systems
  • When the software option is selected, a set of electronic sensors is included

Scope of Delivery

  • 1 × Experiment unit
  • 1 × Pipe bundle surface module
  • 1 × Finned surface module
  • 1 × Flat surface module
  • 1 × Can of thermal paste
  • 1 × Instruction manual

Q1. Which heating surface modules are supplied as standard with the ThermoFlux – 7027?
Three modules are supplied: a finned surface (7 fins, 0.14 m², 150 W), a pipe bundle (20 tubes, 0.06 m², 150 W), and a flat surface (0.013 m², 150 W). Optional modules include a plain cylinder, a cylinder with heating foil, and a plate surface.

Q2. How are free and forced convection modes selected on this apparatus?
Forced convection is achieved by activating the axial fan at the top of the duct; free convection experiments are conducted with the fan inactive. The same plug-in surface modules are used in both modes.

Q3. What is the heating power control range of the Free and Forced Convection Heat Exchanger?
The control panel provides continuously variable electrical output from 0 to 100 W, with a direct readout in watts.

Q4. Can the surface modules be used outside the duct?
Yes. Each module may be used independently on the bench in horizontal orientation to establish free convection coefficients without the duct, extending the experimental versatility of the apparatus.

Q5. What is the maximum surface temperature of the heating elements?
All heating elements on the ThermoFlux – 7027 are subject to a temperature limitation of 90°C.

Explore Related Equipment

Discover more mechanical engineering lab equipment including testing systems, experimental setups, and training models designed for academic and industrial applications.

Testimonials

Scientico India delivered CE-certified laboratory equipment for our engineering programme on schedule. Documentation was complete and instruments were well calibrated.

Need Assistance? We're Here to Help!

Connect with our team for product specifications, pricing, and customized solutions for your institution or project.

Make An Enquiry