Combustion in a High-Speed Compression-Ignition Engine (open access)

Combustion in a High-Speed Compression-Ignition Engine

"An investigation conducted to determine the factors which control the combustion in a high-speed compression-ignition engine is presented. Indicator cards were taken with the Farnboro indicator and analyzed according to the tangent method devised by Schweitzer. The analysis show that in a quiescent combustion chamber increasing the time lag of auto-ignition increases the maximum rate of combustion. Increasing the maximum rate of combustion increases the tendency for detonation to occur" (p. 63).
Date: May 21, 1931
Creator: Rothrock, A. M.
System: The UNT Digital Library
Effect of orifice length-diameter ratio on fuel sprays for compression-ignition engines (open access)

Effect of orifice length-diameter ratio on fuel sprays for compression-ignition engines

"Experimental results on the effect of the length-diameter ratio of the orifice on the spray characteristics, together with a brief analysis of the factors affecting these characteristics, are presented in this report. The length-diameter ratios tested ranged from 0.5 to 10; the orifice diameters from 0.008 to 0.040 inch; and the injection pressures from 2,000 to 8,000 pounds per square inch. The density of the air into which the fuel was discharged was varied from 0.38 to 1.35 pounds per cubic foot" (p. 79).
Date: May 27, 1931
Creator: Gelalles, A. G.
System: The UNT Digital Library
The effect of increased carburetor pressure on engine performance at several compression ratios (open access)

The effect of increased carburetor pressure on engine performance at several compression ratios

The object of this investigation was to determine the effect of increasing the carburetor pressures from 30 to 40 inches of mercury, at compression ratios from 3.5 to 7.5, on the power, on the maximum cylinder pressures, on the fuel consumption, and on the other performance characteristics of an engine. A roots-type aircraft-engine supercharger was used to maintain the desired carburetor pressure.
Date: May 29, 1931
Creator: Schey, Oscar W. & Rollin, Vern G.
System: The UNT Digital Library
Flame Movement and Pressure Development in an Engine Cylinder (open access)

Flame Movement and Pressure Development in an Engine Cylinder

"This investigation describes a visual method for making stroboscopic observations, through a large number of small windows, of the spread of flame throughout the combustion chamber of a gasoline engine. Data, secured by this method on a small engine burning gaseous fuels, are given to show the effects of mixture ratio, spark advance, engine speed, charge density, degree of dilution, compression ratio, and fuel composition on flame movement in the cylinder. Partial indicator diagrams showing pressure development during the combustion period are included" (p. 697).
Date: May 1, 1931
Creator: Marvin, Charles F., Jr. & Best, Robert D.
System: The UNT Digital Library