Preknock vibrations in a spark-ignition engine cylinder as revealed by high-speed photography (open access)

Preknock vibrations in a spark-ignition engine cylinder as revealed by high-speed photography

"The high-speed photographic investigation of the mechanics of spark-ignition engine knock recorded in three previous reports has been extended with use of the NACA high-speed camera and combustion apparatus with a piezoelectric pressure pickup in the combustion chamber. The motion pictures of knocking combustion were taken at the rate of 40,000 frames per second. Existence of the preknock vibrations in the engine cylinder suggested in Technical Report no.727 has been definitely proved and the vibrations have been analyzed both in the high-speed motion pictures and the pressure traces" (p. 223).
Date: September 11, 1944
Creator: Miller, Cearcy D. & Logan, Walter O., Jr.
System: The UNT Digital Library
Wind-tunnel investigation of air inlet and outlet openings on a streamline body (open access)

Wind-tunnel investigation of air inlet and outlet openings on a streamline body

In connection with the general problem of providing air flow to an aircraft power plant located within a fuselage, an investigation was conducted in the Langley 8-foot high-speed tunnel to determine the effect on external drag and pressure distribution of air inlet openings located at the nose of a streamline body. Air outlet openings located at the tail and at the 21-percent and 63-percent stations of the body were also investigated. Boundary layer transition measurements were made and correlated with the force and the pressure data. Individual openings were investigated with the aid of a blower and then practicable combinations of inlet and outlet openings were tested. Various modifications to the internal duct shape near the inlet opening and the aerodynamic effects of a simulated gun in the duct were also studied. The results of the tests suggested that outlet openings should be designed so that the static pressure of the internal flow at the outlet would be the same as the static pressure of the external flow in the vicinity of the opening.
Date: September 11, 1940
Creator: Becker, John V.
System: The UNT Digital Library
Some Factors Affecting Combustion in an Internal-Combustion Engine (open access)

Some Factors Affecting Combustion in an Internal-Combustion Engine

"An investigation of the combustion of gasoline, safety, and diesel fuels was made in the NACA combustion apparatus under conditions of temperature that permitted ignition by spark with direct fuel injection, in spite of the compression ratio of 12.7 employed. The influence of such variables as injection advance angle, jacket temperature, engine speed, and spark position was studied. The most pronounced effect was that an increase in the injection advance angle (beyond a certain minimum value) caused a decrease in the extent and rate of combustion. In almost all cases combustion improved with increased temperature" (p. 125).
Date: September 11, 1934
Creator: Rothrock, A. M. & Cohn, Mildred
System: The UNT Digital Library
Coefficients of discharge of fuel-injection nozzles for compression-ignition engines (open access)

Coefficients of discharge of fuel-injection nozzles for compression-ignition engines

"This report presents the results of an investigation to determine the coefficients of discharge of nozzles with small, round orifices of the size used with high-speed compression-ignition engines. The injection pressures and chamber back pressures employed were comparable to those existing in compression-ignition engines during injection. The construction of the nozzles was varied to determine the effect of the nozzle design on the coefficient. Tests were also made with nozzles assembled in an automatic injection valve, both with a plain and with a helically grooved stem" (p. 193).
Date: September 11, 1930
Creator: Gelalles, A. G.
System: The UNT Digital Library