gas turbine generator
If you have many Gas turbine Generators working on parallel, if any fault happened in one generator ( so this generator is no longer feeding the load ) load shedding panels will disconnect a group of predetermined Less important loads to help the working generators in the additional load (which may come after fault of the mentioned generator ).
self sustaining speed is output of a turbine= input into compressor
By the operation supply 1.AC generator 2.DC generator In DC generator we are having the following types according to the construction 1.DC Series Generator 2.DC shunt Generator 3.DC Compound Generator
By increasing the flow rate of the natural gas being used as the fuel.
Air and hydrogen gas can be pumped through
A gas turbine power generator and a gas generator are quite similar, but they have their differences. For example, they are for things such as aircrafts which use them for mechanical energy. They are relatively safe to use, and it is better than a gas generator.
Gas turbine power generators are used in two basic configurations. Simple Systems consisting of the gas turbine driving an electrical power generator. You fill them with gas carefully & turn them in.
i think it is not possible... because only through hot side the power of the gas will high that it can rotate the turbine... so generator can be connected only in hot side...
You can use the bio gas to fuel either a steam cycle generator or a gas turbine.
gas turbine are used for expansion of high pressure gas,which rotates the rotor coupled with generator and hence electricity is finally produced.Gas turbine operate on brayton cycle.
The source for mechanical motion supplied to a generator is called a prime mover. This prime mover can be in the form of a steam turbine, gas turbine, water turbine, wind turbine, or internal combustion engine, which converts mechanical energy into electrical energy through the generator.
A handle, a pair of pedals, a treadmill, a water mill, a petrol engine, a diesel engine, a wind turbine, a steam turbine, a gas turbine.
www.muellerenvironmental.com/documents/GER3567H.pdf discusses many factors affecting gas turbine efficiency. It specifically addresses GE turbines, but the factors discussed are relevant to all gas turbine power generators.
The turbine converts pressure & heat energy (in steam turbine & gas turbine), velocity energy (in hydro turbine) into mechanical energy which produces rotation of the turbine. This mechanical force is used to rotate the rotor(which is coupled with the same shaft as that of turbine) of the generator which converts this mechanical energy into electrical energy.
A turbine generator shaft is a critical component in power generation systems that connects the turbine to the generator. As the turbine converts energy from steam, water, or gas into mechanical energy, the shaft transmits this rotational energy to the generator, where it is then converted into electrical energy. The design and materials of the shaft are essential for ensuring efficiency and durability under high rotational speeds and varying loads. Proper alignment and maintenance of the turbine generator shaft are crucial for optimal performance and to prevent mechanical failures.
A turbine is powered by such things as steam, burning gas or oil, water, or wind. The turbine is a type of engine, which might be thought of as a more efficient choice than a gas engine or reciprocating steam engine for doing the same job. The turbine could do many things ranging from powering a vehicle such as a helicopter, a ship, a locomotive, or a piece of equipment such as a centrifuge, a pump, or a generator. When a turbine powers a generator, the generator makes electricity.
All depends on what MW of a generator its coupled with, assuming we are talking about "steam" or "gas" turbines. Otherwise, its relevant to the coupled generator.