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Heat Transfer Through Lagged Pipe
Heat Transfer Through Lagged Pipe

Heat Transfer Through Lagged Pipe

Price 100 INR/ Unit

MOQ : 1 Unit

Heat Transfer Through Lagged Pipe Specification

  • Application
  • Heat Transfer Lab Equipments
  • Power Supply
  • 230 V AC, 50 Hz, Single Phase
  • Temperature
  • Ambient to 100C
  • Interface Type
  • Panel Mounted
  • Usage
  • Heat Transfer Lab Equipments
  • Features
  • Thermocouples, digital temperature indicators, robust build
  • Max Height
  • Approx. 60 cm
  • Test Range
  • 0100C
  • Specimen Size
  • Pipe 25 mm Dia 500 mm Length
  • Accuracy
  • 1C
  • Hardness
  • Standard Material Hardness
  • Display Type
  • Digital Display
  • Operating Voltage
  • 230 V AC
  • Automation Grade
  • Manual
  • Measuring Range
  • 0100C (Temperature)
  • Frequency
  • 50 Hz
  • Resolution
  • 0.1C
  • Humidity
  • Up to 90% RH
  • Port Size
  • 10 mm
  • Gas Pressure
  • Atmospheric
  • Equipment Type
  • Heat Transfer Laboratory Apparatus
  • Number of Specimens
  • 1 (per test)
  • Product Type
  • Heat Transfer Through Lagged Pipe
  • Response Time
  • Instantaneous
  • Mounting Type
  • Bench Mounted
  • Capacity
  • Single Pipe
  • Machine Weight
  • Approx. 18 kg
  • Test Speed
  • Manual
  • Test Width
  • Standard Pipe Width
  • Test Stroke
  • Fixed
  • Control Mode
  • Digital
 

Heat Transfer Through Lagged Pipe Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Supply Ability
  • 100 Units Per Week
  • Delivery Time
  • 1 Week
  • 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)
  • Africa, Middle East, Asia
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Heat Transfer Through Lagged Pipe

Heat Transfer Through Lagged Pipe

Micro Teknik The setup is designed and fabricated to study lagging phenomenon in case of pipes. It consists of three concentric pipes of small thickness as compared to diameter and are arranged concentrically, and closed with the help of two discs. Two different insulating materials fill the annuli between the cylinders compactly. Temperature Sensors are fitted to measure the temperature of pipe walls for radial outward heat flow measurement. Inside the inner pipe, a Nichrome wire heater is placed axially. Heat input to the heater is given through a variac and measured by Digital Voltmeter and Digital Ammeter. By varying the heat-input rates, wide range of experiments can be performed

Experiments

  • To estimate the actual rate of heat transfer through the composite cylinders from the measured interface. temperature of the known value of thermal conductivity of the two insulating materials.
  • To determine the effective thermal conductivity of the composite cylinders.
  • To determine the theoretical temperature profile within the composite cylinders.
  • Utilities Required.

 



Precise Measurement and Control

With factory-calibrated J-type thermocouples and a digital control panel, the equipment enables accurate, real-time temperature measurement for scientific experiments. The controlled flow rate and variable insulation layer guarantee flexibility and reproducibility in heat transfer analysis.


Safety and Compliance Assured

Safety is prioritized through over-temperature protection mechanisms and full compliance with ISO and CE certifications. The apparatus is reliable for rigorous educational and research environments, ensuring both operational safety and data accuracy.


User-focused Versatility

Designed for heat transfer laboratories, this bench-mounted unit supports varied research needs. Its manual interface encourages skill development in data acquisition and system control, while robust construction ensures long-term service.

FAQs of Heat Transfer Through Lagged Pipe:


Q: How does the Heat Transfer Through Lagged Pipe apparatus operate?

A: The apparatus operates by circulating water through a lagged stainless steel or brass pipe, with heat introduced via an immersion heater. Temperature is accurately recorded along the pipes length using J-type thermocouples, monitored on a digital display. Flow and insulation thickness can be adjusted to study different heat transfer scenarios.

Q: What are the main benefits of using this heat transfer equipment in the laboratory?

A: This equipment offers high measurement accuracy (1C), swift response times, and customizable insulation, all of which support a variety of controlled heat transfer experiments. Its compliance with ISO and CE standards, robust build, and safety features enhance both reliability and user peace of mind.

Q: When is recalibration required, and what support is available?

A: The apparatus is factory pre-calibrated and generally does not require frequent recalibration. If recalibration or maintenance is needed, both on-site and online service support are readily available to assist users.

Q: Where can this apparatus be effectively used?

A: It is best utilized in academic and industrial laboratories focusing on heat transfer education and research. Its compact, bench-mounted design is ideal for controlled installations within labs, accommodating ambient temperatures from 10C to 40C and up to 90% relative humidity.

Q: What is the process for conducting experiments with this equipment?

A: To conduct experiments, install a single specimen pipe in the apparatus, adjust the desired insulation thickness, and start the water flow using the rotameter. Activate the immersion heater, monitor real-time temperatures on the digital display, and record manual readings as required for analysis.

Q: How is safety ensured during operation?

A: The apparatus features over-temperature protection to prevent overheating, operates at standard laboratory voltages, and is designed in accordance with recognized safety standards (ISO and CE), ensuring dependable and secure use.

Q: What are the usage and application areas for this apparatus?

A: The primary usage is in heat transfer laboratory education and research to demonstrate and analyze thermal conductivity and insulation effects. It is also suitable for academic demonstrations, student projects, and quality assurance testing in industrial labs.

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