Radial Heat Conduction Experiment Module-TH102

Product Introduction:

This product is used in conjunction with the basic experimental platform for heat transfer to carry out the experimental module of one-dimensional steady-state heat conduction law and calculation in Fourier’s law of heat conduction in “Heat Transfer”. The equipment consists of a one-dimensional steady-state radial thermal conductivity experimental model consisting of a heating section, a sample section, a cooling section, and an insulation body. Temperature measurement points are evenly distributed in each section and collected to the basic heat transfer experimental platform. The product is mainly used to analyze the temperature change law of columnar solid materials along the radial heat conduction direction, scientifically understand and intuitively verify Fourier’s thermal conductivity law, and calculate the thermal conductivity coefficient of the sample.

detailed information

PRODUCT MODELTH102product nameRadial Heat Conduction Experiment Module
Product specificationsLength 190mm/Width 190mm/Height 155mmproduct materialAcrylic plate
Usage environmentRoom temperature, relative humidity ≤ 85%Input power supplySingle phase three wire, 220V ± 5%, 50Hz
Belonging seriesHeat TransferCooperate with modulesTH100
Experimental function:
1、Can be used to study and verify the principle of one-dimensional steady-state thermal conductivity, analyze the heat transfer process and temperature distribution along the axial direction of columnar materials, etc;
2、Can be used to analyze the influencing factors of Fourier’s law of thermal conductivity on the heat transfer rate of solid materials; (Experimental steps must be provided during bidding);
3、Can measure the steady-state thermal conductivity temperature distribution along the cylindrical wall surface (radial heat flux) (real experimental data and steps need to be provided during bidding);
4、Measurable thermal conductivity of disk materials (real experimental data and steps must be provided during bidding);

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