Steady-State and Non-Steady-State Heat Conduction - LTek Online
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Steady-State and Non-Steady-State Heat Conduction
Steady-State and Non-Steady-State Heat Conduction
Product Code: LTEKCTLB-FMT61-00148

Tenders Description & Specification for Steady-State and Non-Steady-State Heat Conduction

Steady-State and Non-Steady-State Heat Conduction

Heat conduction is the transport of heat between the individual molecules in solid, liquid and gaseous media under the influence of a temperature difference. Steady heat conduction is the term used when heat transport is maintained permanently and uniformly by adding heat. Thermal conductivity λ is a temperature-dependent property of a material that indicates how well the heat propagates from a point in the material. In transient heat conduction, the temperature distribution in the body is dependent on location and time.
The heat source consists of an electrically heated hot water circuit. An electronic controller ensures the heating water is kept at a constant temperature. The heat sink is realised by means of a water cooling system. An elevated tank ensures a constant cooling water flow rate.
The temperature measurement points are designed to has as little influence on the temperature as possible and the core temperature of the sample is measured. Used to study both steady and transient heat conduction. The trainer consists of a heat source and a heat sink, between which cylindrical samples made of different metals are inserted. Each sample is fitted with 12 temperature measurement points. 
The temperatures of the sample, heating and cooling water, as well as the electrical heating power and the cooling water flow rate are displayed digitally on the switch cabinet and can be transmitted simultaneously via USB directly to a PC where they can be analysed using the software included. The thermal conductivity λ can be calculated from the measured data.
A temperature jump can be generated by appropriate regulation of the cooling water flow. A PC can be used to display the transient temperature distribution in the sample over time and place. 

Specification:
Investigation of steady and transient heat conduction in metals
Heating water circuit as heat source, electronically regulated
Electric heater with PID controller
Determining the thermal conductivity λ
Samples made of 5 different metals
Cooling water temperature and flow rate measurement
Elevated tank with overflow for generating a constant cooling water flow rate
Digital displays: electric heating power, temperatures, cooling water flow rate
Software for data acquisition via USB under windows 7, 8.1, 10

Technical data:
Heater
Output: 800W
Temperature: 20…85°C
Heating tank: ca. 2L
Cooling tank: ca. 0,5L
Elevated tank: ca. 6L
Samples, Ø 40mm
3x 450mm (copper, aluminium, brass)
2x 300mm (steel, stainless steel)
Temperature sensors
2x Pt100, in the cooling water
1x Pt100, in the heating water
12x thermocouple type K, along the sample
Measuring ranges
Flow rate: 0,1…2,5L/min
Temperature: 14x 0…100°C
Power: 0…1000W
230V, 50Hz, 1 phase
230V, 60Hz, 1 phase, 120V, 60Hz, 1 phase.

Ltekonline are the manufacturers of Steady-State and Non-Steady-State Heat Conduction used to demonstrate engineering principles in Engineering Colleges, Engineering Schools and Fluid Mechanics Teaching Equipment for Engineering Teaching Lab in Universities

Categories: Fluid Mechanics Teaching Equipment

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