Convection and Radiation Heat Transfer Experiment Module-TH104

Product Introduction:

This product is designed to be used in conjunction with the basic experimental platform for conducting experimental verification and research on the comprehensive heat transfer principles and laws related to convection (natural and forced convection) and radiation in “Heat Transfer”. The experimental platform is equipped with a blackbody like thermal radiation heating circular tube, based on the theoretical model of outward swept circular tube convection. Comprehensive experiments related to convection and radiation are carried out by configuring air channels, fans, air volume control devices, rotatable electric heating, etc. The data is collected to the basic experimental platform for heat transfer, supporting experimental design within the discipline.

detailed information

PRODUCT MODELTH104product nameConvection and Radiation Heat Transfer Experiment Module
Product specificationsLength 300mm/Width 430mm/Height 1100mmproduct 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、It is possible to study the comprehensive heat transfer (radiation QR+convection QC) on the wall of a blackbody like circular tube under different power inputs and natural convection, and observe the changes in surface temperature (real experimental data and steps need to be provided during bidding);
2、Can be used to calculate the convective heat transfer coefficient when the surface temperature of the pipe wall is low (real experimental data and steps need to be provided during bidding);
3、Can be used to calculate the radiative heat transfer coefficient when the surface temperature of the pipe wall is high (real experimental data and steps need to be provided during bidding);
4、Can be used to study the effect of forced convection on heat transfer on the pipe wall surface under different wind speeds (real experimental data and steps need to be provided during bidding);
5、It can be used to study the variation of local heat transfer coefficient on the pipe wall under different wind speeds;
6、Can study the effect of forced convection on heat transfer on the surface of a cylinder at different wind speeds and surface temperatures;
7、Can study the relationship between forced convection and the air flow velocity and surface temperature of a cylinder (real experimental data and steps need to be provided during bidding);
8、The dominant effects of convective and radiative heat transfer coefficients can be compared between low-temperature and high-temperature surface temperatures;
9、By adjusting the angle of the circular tube, the distribution of wall temperature in the heat transfer model of the outward swept circular tube can be compared;

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