EP1234966A2

Gas-fueled, compression ignition engine with maximized pilot ignition intensity

Abstract

Pilot fuel injection and/or ignition are controlled in a pilot ignited, gas-fueled, compression ignition engine so as to maintain a relationship Dp/Di of < 1, where Dp is the duration of the pilot injection event and Di is the injection delay period as measured from the start of initiation of pilot fuel injection (Tp) to the start of pilot fuel autoignition (Ti). Dp/Di is less than 1 when a mixing period Dm exists between the end of pilot fuel injection and the start of autoignition. This mixing period permits the injected pilot fuel to become thoroughly distributed through and mixed with the gaseous fuel/air charge in the combustion chamber and vaporized prior to ignition, resulting in improved premixed burning of a heterogeneous mixture of the pilot fuel, the gaseous fuel, and air and dramatically reduced NOx emissions. Dp/Di (or a characteristic of it such as Di or Dm) preferably is maintained within a predetermined range on a cycle-by-cycle, full speed and load range basis so as to maximize ignition intensity under all engine operating condition. The resultant maximization of pilot ignition intensity can generate instantaneous power on the order of 200 kW/l of engine displacement. <IMAGE>

EP1234966A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 22 February 2022, 4.6 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

32 claims: 3 independent, 29 dependent

  1. 1
    A method of injecting a charge of pilot fuel into a combustion chamber a compression ignition engine so as to ignite a charge of gaseous fuel in the combustion chamber, the method comprising:controlling at least one of a timing, Tp, of initiation of pilot fuel injection, a pilot fuel injection duration, Dp, and an ignition delay period, Di, such that Dp/Di is < 1.
  2. 23
    A method for the pilot ignition of a mixture of a gaseous fuel and air in a combustion chamber of an internal combustion engine, the method comprising:(A) injecting a pilot fuel charge into a combustion chamber either before or after the gaseous fuel is admitted into the combustion chamber, the pilot fuel being capable of autoignition by compression ignition;(B) igniting the pilot fuel charge by causing a piston of the engine to undergo a compression stroke;and(C) controlling at least one of pilot fuel injection timing, pilot fuel injection duration, and autoignition timing to generate peak power in excess of 100 kW/1 from the combustion of the pilot fuel charge in the combustion chamber.
  3. 24
    An engine comprising:(A) a cylinder which includes an engine head and a piston which is reciprocateably translatable in said cylinder to define a variable-volume combustion chamber between said engine head and said piston;(B) a gaseous fuel source positioned in fluid communication with said combustion chamber during one of an intake stroke of said piston and a compression stroke of said piston;(C) an air source positioned in fluid communication with said combustion chamber during said intake stroke of said piston;(D) a pilot fuel injector which is configured to inject a charge of pilot fuel into said combustion chamber during the compression stroke of said piston;and(E) a controller which controls a device comprising at least said pilot fuel injector, said gaseous fuel source, and said air source such that a timing, Tp, of initiation of pilot fuel injection, a pilot fuel injection duration, Dp, and an ignition delay period, Di, are such that Dp/Di is < 1.