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Electrical Energy.

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Presentation on theme: "Electrical Energy."— Presentation transcript:

1 Electrical Energy

2 Electrical Charges Electrical Charges and Current Coulmb’s Law
Like charges attract, unlike charges repel. Coulmb’s Law

3 Electric and Hydraulic Analogy
Current Flow rate Voltage Elevation Battery Pump Motor Water wheel

4 Series and Parallel Circuits
Same current passes through all devices If one device fails, all fail Parallel Currents add up Devices work independent of each other Fire Hazard

5 Units Charge C Current A Voltage V Resistance W Energy kWh
Power W, kW, MW, GW

6 Table 1. Power Consumption For Several Household Appliances*
Power, W Clock Radio Television (color) Freezer/Refrigerator Hair Dryer Washer (clothes) Vacuum Cleaner Home Computer 2 Air Conditioner Coffee Maker Iron Dishwasher Toaster Microwave Oven Dryer (clothes) Oven range

7 Generation of electricity
Thermal Powerplants Solar Photovoltaics Thermophotovoltaics Electrically Conductive Plastics Fuel Cells

8 Fuel Cells

9 Principle of Operation
Electrolysis H2O + electric current  H2+1/2 O2 Fuel Cells H2+1/2 O2 H2O +electric current

10 Generation

11 Storage Battery (chemical energy) Ultracapacitor (static energy)
Flywheel (rotational energy)

12 Batteries Batteries are devices that produce electric potentials
Primary batteries Secondary batteries Batteries are characterized by: Electrical potential Capacity

13 Transmission To reduce power loss we must reduce current
P=RI2 To reduce current we must transmit power at very high voltages (Since voltage is constant) P=V.I

14 Transmission Grid

15 Load and Capacity Base load Peak load Average load Capacity Factor
Optimal Size

16 Load Duration


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