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Simulation and validation of liquid oxygen and liquid hydrogen pressurization systemsRivera-Rivera, Ramiro Luis, January 2003 (has links) (PDF)
Thesis (M.S. in M.E.)--School of Mechanical Engineering, Georgia Institute of Technology, 2004. Directed by S.M. Jeter. / Bibliography: leaf 107.
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Application of the van der Pauw structure as a piezoresistive pressure sensor a numerical study /Law, Jesse Townsend. January 2007 (has links) (PDF)
Thesis (M.S.)--Montana State University--Bozeman, 2007. / Typescript. Chairperson, Graduate Committee: Ahsan Mian. Includes bibliographical references (leaves 58-59).
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Design, analysis, and testing of a low pressure cryogenic valveGleaton, Anthony James. Luongo, Cesar A. January 2004 (has links)
Thesis (M.S.)--Florida State University, 2004. / Advisor: Dr. Cesar Luongo, Florida State University, College of Engineering, Dept. of Mechanical Engineering. Title and description from dissertation home page (viewed Dec. 16, 2004). Includes bibliographical references.
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Dynamics and stability issues of poppet type pressure relief valves /Pfeiffer, Ferris M., January 2004 (has links)
Thesis (M.S.)--University of Missouri-Columbia, 2004. / Typescript. Vita. Includes bibliographical references (leaves 83-88). Also available on the Internet.
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Dynamics and stability issues of poppet type pressure relief valvesPfeiffer, Ferris M., January 2004 (has links)
Thesis (M.S.)--University of Missouri-Columbia, 2004. / Typescript. Vita. Includes bibliographical references (leaves 83-88). Also available on the Internet.
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Simulation and validation of liquid oxygen and liquid hydrogen pressurization systemsRivera-Rivera, Ramiro Luis 01 December 2003 (has links)
No description available.
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Non-linear response of a fluid valveBouguerra, Hichem January 1987 (has links)
The method of multiple scales is used to study the nonlinear response of a relief valve under a constant static pressure and a sinusoidal dynamic pressure that can be generated by variations in the pneumatic transmission lines. Under certain conditions, large vibrations may occur, causing unsatisfactory performance as well as undesirable noise. In this theoretical analysis, the valve is modeled by a continuous spring fixed at one end and attached to a valve ball at the other end. The ball rests on a valve seat having nonlinear spring characteristics. The method of multiple scales is used to determine the non-linear response of the valve for the cases of harmonic, higher-harmonic, subharmonic and combination resonances. Conditions are determined for the onset and stability of large-amplitude oscillations. / M.S.
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