Skewed combustion chamber for opposed-piston engines
A combustion chamber for an opposed-piston engine has a rotationally skewed shape in a longitudinal section that is orthogonal to a chamber centerline, between diametrically-opposed openings of the combustion chamber through which fuel is injected. The rotationally skewed shape interacts with swirl to generate a tumble bulk charge air motion structure that increases turbulence.
1. A method for operating a two-stroke cycle, compression ignition, opposed-piston engine including at least one cylinder with a bore and a sidewall, piston-controlled exhaust and intake ports near respective ends of the cylinder, a pair of fuel injectors that are mounted in the sidewall, and a pair of pistons disposed in opposition in the bore, by:
introducing swirling charge air into the cylinder between end surfaces of the pistons, in which the end surfaces have flat aspects without outwardly-extending ridges;
moving the pistons toward each other in a compression stroke; and,
forming a combustion chamber between the end surfaces of the pistons,
the combustion chamber having a centerline and further comprising:
a rotationally skewed shape in a first longitudinal section of the combustion chamber that is symmetrical with respect to the combustion chamber centerline; and,
an elongated shape in a second longitudinal section of the combustion chamber that is orthogonal to the first longitudinal section with opposite end portions that taper along the combustion chamber centerline toward the fuel injectors; and,
the method further comprising the fuel injectors injecting opposing fuel sprays into swirling charge air in the combustion chamber.
2. The method of claim 1 , wherein injecting opposing fuel sprays includes injecting opposing fuel sprays in which each fuel spray has three plumes or injecting opposing fuel sprays in which each spray has four plumes.