dual cycle - translation to greek
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dual cycle - translation to greek

Dual cycle; Seiliger cycle; Sabathe cycle; Mixed/Dual Cycle; Mixed cycle; Limited-pressure cycle
  • Pressure-Volume diagram of Sabathe cycle
  • Temperature-Entropy diagram of Sabathe cycle

dual cycle         
μικτό κύκλωμα
instruction cycle         
BASIC OPERATION CYCLE OF A COMPUTER
Fetch execute cycle; Fetch-execute cycle; Fetch-decode-execute cycle; Execute cycle; Computer cycle; Computer cycles; FE Cycle; CPU cycle; Fetch and execution cycle; Fetch and execute cycle; Machine cycle; I/E time; Processor cycle; Instruction fetching; Instruction fetch; Opcode fetch; Computing cycle
κύκλος εντολών
μικτό κύκλωμα      
dual cycle

Definition

Otto cycle
·add. ·- A four-stroke cycle for internal-combustion engines consisting of the following operations: First stroke, suction into cylinder of explosive charge, as of gas and air; second stroke, compression, ignition, and explosion of this charge; third stroke (the working stroke), expansion of the gases; fourth stroke, expulsion of the products of combustion from the cylinder. This is the cycle invented by Beau de Rochas in 1862 and applied by Dr. Otto in 1877 in the Otto-Crossley gas engine, the first commercially successful internal-combustion engine made.

Wikipedia

Mixed/dual cycle

The dual combustion cycle (also known as the mixed cycle, Trinkler cycle, Seiliger cycle or Sabathe cycle) is a thermal cycle that is a combination of the Otto cycle and the Diesel cycle, first introduced by Russian-German engineer Gustav Trinkler, who never claimed to have developed the cycle himself. Heat is added partly at constant volume (isochoric) and partly at constant pressure (isobaric), the significance of which is that more time is available for the fuel to completely combust. Because of lagging characteristics of fuel this cycle is invariably used for Diesel and hot spot ignition engines. It consists of two adiabatic and two constant volume and one constant pressure processes.

The dual cycle consists of following operations:

  • Process 1-2: Isentropic compression
  • Process 2-3: Addition of heat at constant volume.
  • Process 3-4: Addition of heat at constant pressure.
  • Process 4-5: Isentropic expansion.
  • Process 5-1: Rejection of heat at constant volume.