Geothermal Energy USDOE

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Geothermal Energy USDOE ( geothermal-energy-usdoe )

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Suggestions: Students can use multiple fuel sources to determine the amount of particulates produced by each source. 5 How does the size and number of turbine blades and steam jets affect the performance of a model dry steam power plant? Learning Objective: The students will know and understand that the thermal energy in steam, when coupled with a turbine, can be converted to mechanical energy that can be used to generate electricity. Controls and Variables: size and configuration of turbine, size of holes in bottom of can, number of holes, spacing of holes, speed of turbine Materials and Equipment: aluminum pie tins (8”), aluminum foil, empty soup or coffee can, 20 cm length of stiff wire or coat hanger, cork, medium cooking pot, hot plate, duct tape, pliers with wire cutter, scissors Safety and Environmental Requirements: As with all experiments that involve heating and pressure you will need to wear eye protection and heat insulating gloves. Exercise caution with working with sharp edges of soup or coffee can and pie tin. Suggestions: Students can experiment with different sizes and configurations of holes for the steam to pass through. They can also change the configuration of the turbine blades to produce more or less angle or change the diameter of the turbine. The speed of the turbine can be calculated by putting a mark on one edge of the turbine and counting how many revolutions it makes in a specific amount of time. How to Construct the Model Turbine: Half - fill a medium sauce pan with water and cap it with a secure layer of aluminum foil. Be sure to wrap the edges under the lip of the pan to minimize steam escape. Punch a hole about half the diameter of the coffee or soup can in the middle of the foil. Cut a hole in the center of a pie plate with the same diameter as the foil. Place this over the foil to provide support for the soup can. This is the steam generator. Construct a turbine from an aluminum pie pan, making sure that the turbine is smaller in diameter than the can. Bend the stiff wire into a hanger for the turbine and duct tape it to the side of the can, bottom side up. Push the cork onto the end of the hanger. Pierce the exact center of the turbine with a straight pin, then push the straight pin into the bottom of the cork to suspend the turbine over the can. The turbine should hang relatively horizontal and spin freely.

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