Control Rods & Moderators:
The overall purpose of a nuclear reactor is to collect the heat energy produced from nuclear reactions
Control Rods:
Purpose of a control rod: To absorb neutrons
Moderator:
The purpose of a moderator: To slow down neutrons
Shielding:
Shielding metals in a nuclear reactor
Diagram of a Fossil fuel based Reactor. The overall purpose of the reactor is to collect the heat energy produced from burning fossil fuels
The two main designs of wind generators: horizontal and vertical alignment
A hydroelectric power generation station. In off-peak hours water can be pumped back to the higher reservoir.
A column of air can provide only a limited amount of energy for a wind generator of blade radius r
KE = ½ × mass × velocity2
m = ρV = ρAL
L = vt
m = ρvtA = ρvA
P = ½ × (ρvA) × v2
P = ½ ρAv3
Air moving at speed 9.5 m s-1 with a density of 1.15 kg m-3 is incident on a wind turbine. The length of the blades in the wind turbine are 14 m. After passing the wind turbine, the air is moving with a speed of 4.5 m s-1 and has a density of 1.30 kg m-3. Deduce the maximum power possible every second from this situation.
Step 1: List known values
Step 2: Find maximum power available
P = 0.5 × ρ × A × v3 = 0.5 × 1.15 × π × 142 × 9.53 = 3.04 × 105W
Step 3: Find the remaining power within the air after passing the turbine
P = 0.5 × ρ × A × v3= 0.5 × 1.15 × π × 142 × 4.53= 3.64 × 104 W
Step 4: Find the power available for the turbine to use
P = (3.04 × 105) - (3.64 × 104) = 2.68 × 105 W
Step 5: State the final answer
In a hydroelectric dam, water of density 1000 kg m−3flows with a flow rate: 75 × 10−3 m3 s−1goes through a turbine and descends approximately 22 m. Deduce the maximum power this will give if the efficiency of the turbine system is 85%.
Step 1: List the known quantities
Step 2: State the relevant equation for hydroelectric power
Step 3: Substitute in the values
P = (1000 × 9.8 × 22) × (75 × 10−3) × 0.85 = 1.37 x 104 W
Step 4: State final answer
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