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An engine, otherwise known as a motor, is a device that converts energy into useful mechanical motion. Motors which change heat energy into motion are referred to as engines. Engines are available in various types like for instance internal and external combustion. An internal combustion engine usually burns a fuel using air and the resulting hot gases are utilized for creating power. Steam engines are an example of external combustion engines. They use heat to produce motion together with a separate working fluid.
To be able to generate a mechanical motion through different electromagnetic fields, the electric motor must take and produce electrical energy. This type of engine is very common. Other kinds of engine can be driven utilizing non-combustive chemical reactions and some would utilize springs and be driven by elastic energy. Pneumatic motors function by compressed air. There are various styles depending upon the application required.
Internal combustion engines or ICEs
Internal combustion occurs when the combustion of the fuel combines along with an oxidizer inside the combustion chamber. Inside the IC engine, higher temperatures would result in direct force to certain engine components like for example the turbine blades, nozzles or pistons. This particular force produces functional mechanical energy by way of moving the part over a distance. Usually, an ICE has intermittent combustion as seen in the popular 2- and 4-stroke piston motors and the Wankel rotary engine. Nearly all gas turbines, rocket engines and jet engines fall into a second class of internal combustion motors known as continuous combustion, which takes place on the same previous principal described.
Stirling external combustion engines or steam engines very much vary from internal combustion engines. The external combustion engine, wherein energy is to be delivered to a working fluid like for instance hot water, liquid sodium, pressurized water or air that is heated in a boiler of some type. The working fluid is not mixed with, consisting of or contaminated by burning products.
The styles of ICEs obtainable right now come with various strengths and weaknesses. An internal combustion engine powered by an energy dense fuel will deliver efficient power-to-weight ratio. Even though ICEs have succeeded in many stationary applications, their real strength lies in mobile applications. Internal combustion engines control the power supply intended for vehicles like for example boats, aircrafts and cars. Some hand-held power gadgets use either ICE or battery power equipments.
External combustion engines
In the external combustion engine is made up of a heat engine working using a working fluid like for example gas or steam that is heated through an external source. The combustion will happen through the engine wall or through a heat exchanger. The fluid expands and acts upon the engine mechanism which generates motion. Next, the fluid is cooled, and either compressed and used again or discarded, and cool fluid is pulled in.
Burning fuel utilizing the aid of an oxidizer so as to supply the heat is known as "combustion." External thermal engines could be of similar operation and configuration but use a heat supply from sources like for example solar, nuclear, exothermic or geothermal reactions not involving combustion.
Working fluid can be of any constitution, even if gas is the most common working fluid. At times a single-phase liquid is sometimes utilized. In Organic Rankine Cycle or in the case of the steam engine, the working fluid adjusts phases between gas and liquid.