Q.Explain the principle and working of a nuclear reactor with the help of a labeled diagram.
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Start your 14-day free trial to unlock the full solution →A nuclear reactor sustains a controlled fission chain reaction — a moderator slows neutrons, control rods regulate the reaction rate (k=1), and coolant carries the heat away to raise steam and generate electricity.
Principle: A nuclear reactor works on the principle of a controlled and self-sustaining nuclear fission chain reaction. When a heavy fissile nucleus such as U-235 absorbs a slow (thermal) neutron, it splits into two lighter nuclei, releasing a large amount of energy (~200 MeV per fission) along with 2–3 fast neutrons. If, on average, exactly one of these released neutrons goes on to cause another fission (multiplication factor k = 1), the chain reaction proceeds at a steady, controlled rate — this is called a critical reactor, and it is the operating condition of a working nuclear reactor. (If k > 1 the reaction grows uncontrollably, as in a bomb; if k < 1 it dies out.)
Main components and working (labelled diagram description):
- Fuel rods — enriched uranium (U-235, typically 2–4% enriched) or plutonium, formed into rods, is the fissile fuel in which the chain reaction occurs.
- Moderator — a material such as heavy water (D2O) or graphite surrounds the fuel rods; it slows down the fast neutrons released in fission to thermal (slow) speeds, since slow neutrons are far more effective at inducing further fission in U-235.
- Control rods — rods of a strongly neutron-absorbing material (boron or cadmium) are inserted into or withdrawn from the reactor core; adjusting their depth controls the number of neutrons available for further fission, keeping k = 1 in normal operation (or k ≪ 1 on emergency shutdown, by fully inserting them).
- Coolant — a fluid (water, heavy water, or liquid sodium) is circulated through the core to carry away the large amount of heat generated by fission; the hot coolant passes through a heat exchanger, converting water in a secondary loop into high-pressure steam. …
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