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- W1602182009 abstract "Heat transfer under conditions of oscillating pressure and oscillating flow occurs in almost every reciprocating energy conversion machine and can have large effects on the engine performance. This is particularly important in closed-machines such as Stirling engines. Most computer models of reciprocating engines predict this heat transfer by using correlations developed for steady pressure, steady flow conditions. It has been proven that these correlations are inadequate for predicting heat transfer in an oscillating environment. A large test apparatus has been built that simulates the oscillating pressure oscillating flow conditions found in actual Stirling machines. This apparatus can measure velocity, pressure, centerline temperature, wall temperature, and heat flux. Velocity and temperature profiles can also be taken across the diameter of the pipe. This work addresses the collection of baseline data under conditions of oscillating pressure and oscillating flow by (a) determining an effective seeding method for the laser Doppler Velocimeter, (b) reducing noise so that accurate data can be taken, and (c) recording and analyzing baseline heat transfer data. Results show that the phase shift between centerline-wall temperature difference and heat flux is dependent on both oscillating Peclet number and compressor phase angle. Measurements using a laser Doppler velocimeter were made for the first time in an oscillating pressure and oscillating flow experiment. Thesis Supervisors: Dr. Joseph L. Smith, Jr., and John H. Lienhard V Titles: Professors of Mechanical Engineering" @default.
- W1602182009 created "2016-06-24" @default.
- W1602182009 creator A5059866252 @default.
- W1602182009 date "1994-01-01" @default.
- W1602182009 modified "2023-09-28" @default.
- W1602182009 title "Experiments in heat transfer under conditions of oscillating pressure and flow" @default.
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