Wind tunnel with aerodynamic models and heating frame.
Code: EQ266D
Function
Intended for experimental study, physics laboratories in secondary and higher education on: Aerodynamics. Airflow over a solid of two triangular prisms. Aerodynamics. Positioning the two-prism solid in the wind tunnel test section. Airflow over two-prism solids. Changing the orientation of the two-prism solid in the wind tunnel test section. Airflow over a right cone section. Positioning the right cone section in the wind tunnel test section. Airflow over a right cone section at a speed of 0 km/h. Airflow over a right cone section at a speed of 0.5 km/h. Airflow over a right cone section at a speed of 1.0 km/h. Airflow over a right cone section at a speed of 1.5 km/h. Airflow over a straight cone section at a speed of 2.0 km/h. Airflow over a quarter-sphere solid. Positioning the quarter-sphere in the wind tunnel test section. Airflow over a quarter-sphere. Changing the orientation of the quarter-sphere in the wind tunnel test section. Airflow over a vertical section of an equilateral cylinder. Positioning the vertical section of the equilateral cylinder in the wind tunnel test section. Airflow over the vertical section of the equilateral cylinder. Changing the orientation of the vertical section of the equilateral cylinder in the wind tunnel test section. Airflow over a sphere. Positioning the magnetically based sphere in the wind tunnel test section. Airflow over a sphere. How to heat airflow in a wind tunnel using a heating frame. Used for evaluating drying conditions in a wind tunnel. Case study of a frame. Positioning the heating element and power controller in the wind tunnel. Heating the wind tunnel using the heating element. Case of 2 heating elements. How to position a second heating element in parallel with the first. Heating the wind tunnel using heating elements in parallel, etc.
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