Computerized Vapour Compression Refrigeration Trainer
Computerized Vapour Compression Refrigeration Trainer

Computerized Vapour Compression Refrigeration Trainer

Price 454005 INR/ Piece

MOQ : 01 Piece

Computerized Vapour Compression Refrigeration Trainer Specification

  • Temperature
  • Evaporator: -5C to 15C, Condenser: Up to 55C
  • Features
  • Real-time Data Logging, Fault Simulation, Safety Protection, Digital Sensors
  • Response Time
  • Less than 2 seconds
  • Power Supply
  • 230V AC, 50 Hz, Single Phase
  • Number of Specimens
  • Single system
  • Resolution
  • 0.01C (temperature), 0.1 psi (pressure)
  • Max Height
  • Approx. 140 cm
  • Mounting Type
  • Table Top/Lab Bench
  • Humidity
  • Ambient to 90% RH
  • Accuracy
  • 0.1C (temperature), 1 psi (pressure)
  • Frequency
  • 50 Hz
  • Test Range
  • Evaporator and condenser temperature range
  • Display Type
  • Digital (with graphical interface via software)
  • Interface Type
  • USB/RS232 Data Communication
  • Application
  • Educational/Research & Laboratory Training
  • Operating Voltage
  • 230V AC
  • Measuring Range
  • -5C to 55C (Temperature)
  • Gas Pressure
  • Max 250 psi
  • Automation Grade
  • Automatic (via software)
  • Port Size
  • Standard 1/4 SAE
  • Usage
  • Vapour Compression Refrigeration cycle demonstration
  • Capacity
  • 0.5 TR (ton of refrigeration)
  • Machine Weight
  • Approx. 75 kg
  • Control Mode
  • Computerized with Data Acquisition System
  • Equipment Type
  • Computerized Vapour Compression Refrigeration Trainer
  • Training Scope
  • Enthalpy Calculations, COP Evaluation, Real-time Graph Plotting
  • Safety Features
  • High/Low Pressure Cut-off, Overload Protection
  • Pressure Measurement
  • Digital Pressure Sensors at Suction and Discharge
  • Compressor Type
  • Hermetically Sealed Reciprocating Compressor
  • Data Output
  • PC based export (CSV/Excel format)
  • Software Compatibility
  • Windows XP/7/8/10 or higher
  • Flow Measurement
  • Digital Flowmeter included
  • Refrigerant Type
  • R134a or R22
  • Condenser Type
  • Air-cooled condenser
  • Evaporator Type
  • Finned tube heat exchanger
  • Noise Level
  • Less than 60 dB
  • Overall Dimensions
  • 1000mm x 600mm x 1400mm (LxWxH)
 
 

About Computerized Vapour Compression Refrigeration Trainer

The data acquisitionSystem includes the following sensors:

1) 8 temperaturessensors connected to the supervision system at:

a) Expansion valveinlet and Outlet

b) Compressor inletand Outlet

c) Condenser inletoutlet

d) Evaporator Inletand outlet

2) 2 pressuresensors

a) Low pressure(inlet compressor)

b) High pressure(outlet compressor)

3) Electrical powerconsumption of the compressor

4) Electrical powerconsumption of load The software is divided in two parts. The first part is theschematic diagram with the display of all the data, the second is the graph(plot the data in real time) Total Equipment is skid mounted in SS 40 x40 FrameStructure with Castor wheels. All wetted parts also made of SS-304

Hermetic pistoncompressor Capacity: 18,3cm3

Evaporator capacity:approx. 2800mL Condenser capacity: approx. 2800mL Measuring ranges

Temperature: 8x-20-200C

Pressure: 2x-1-1,5bar

Flow rate (water):2x 048L/h

Flow rate(refrigerant): 1x 0-700L/h

Power: 0-1200W

Required foroperation 230V, 50Hz, 1 phase Touch screen based Fully automatic system withpassword protection

Data acquisitionshould be Remotely operated by Smart phone, Tablets, PC,

laptops via Ethernetand Wi-fi

Should be equippedwith all safety protections Flow visualization should be available in the DAQSystem Should be equipped with both manual and auto operation Power consumptionof individual system, all sensors data

should be displayand logged automatically System should have software for operating, datalogging, processing and data displaying Performance variables (e.g.,Heating/Cooling COP, Heating / Cooling load etc..) should be automaticallycalculated and displayed and should be stored in pen drive also along with PC.

Instruments shouldbe provided with 3D drawing of complete equipment along with the name and makeof all standard components used in the test rig

Each rig should havesmall aesthetically appealing poster with schematic diagram and basic workingdetail. 



Comprehensive Training Scope

This trainer enables students and researchers to explore foundational and advanced concepts of vapour compression refrigeration. Key exercises include enthalpy calculations, COP evaluation, and real-time graph plotting. Using accurate digital sensors and software visualization, users gain practical insights and understanding, making this equipment suitable for diverse educational institutions, laboratories, and research centers.


Reliable Measurement & Control

Equipped with digital flowmeters and pressure sensors at both suction and discharge, this trainer ensures precise and fast readings. The computerized data acquisition system logs real-time values and supports export to CSV or Excel formats. Users can conduct controlled experiments, analyze system performance, and simulate faults with minimal margin for error.


Safety and Versatility

Designed with high/low pressure cut-off and overload protection, the system maintains operator safety and equipment integrity during use. The table-top or lab-bench mounting allows easy setup in educational settings, while compatibility with various versions of Windows enables seamless software integration.

FAQ's of Computerized Vapour Compression Refrigeration Trainer:


Q: How does the computerized refrigeration trainer assist in learning the vapour compression cycle?

A: The trainer provides hands-on experimentation with real-time digital measurements and software-driven analysis. Users can visualize system parameters, plot performance graphs, and understand thermodynamic processes like enthalpy change and coefficient of performance calculation, enhancing conceptual clarity.

Q: What types of measurements can be monitored and exported using this trainer?

A: Temperature, flow rates, and suction/discharge pressures are digitally measured, with temperature accuracy of 0.1C and pressure accuracy of 1 psi. All measured data can be exported to CSV or Excel formats through the PC-based software for later analysis and report generation.

Q: When should the high/low pressure cut-off and overload protection features activate?

A: These safety features are designed to activate automatically whenever suction or discharge pressures exceed safe operational limits or if the compressor experiences overload, thereby protecting both the user and the system from potential damage.

Q: Where can this trainer be installed and used effectively?

A: The trainer is suitable for installation on laboratory benches or table tops in academic, research, or training laboratories. Its compact design (1000mm x 600mm x 1400mm) makes it convenient for limited-space environments typically found in institutions.

Q: What is the process for data logging and exporting results?

A: Upon running experiments, the trainer's software records all relevant sensor data in real time. Users can view and analyze this data within the software and export it in CSV or Excel format for documentation, further analysis, or presentation purposes.

Q: How does the trainer benefit educational programs or research?

A: By providing a controlled, measurable, and safe environment for experiments, the trainer enhances practical learning. Real-time performance visualization, fault simulation, and data logging cultivate analytical skills and deeper understanding of refrigeration principles.

Q: Can the system operate with different refrigerants and under varying environmental conditions?

A: Yes, the system supports both R134a and R22 refrigerants and is designed to function under a wide temperature and humidity range, making it adaptable for diverse experimental setups and environmental conditions.

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